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wortmannin

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Cross-References

ID SourceID
PubMed CID312145
CHEMBL ID428496
CHEBI ID52289
SCHEMBL ID4531
MeSH IDM0054588

Synonyms (84)

Synonym
smr001566836
wortmanin
nsc 627609
brn 0067676
W0007
BRD-K87343924-001-02-4
3h-furo[4,2-de]indeno[4,5-h]-2-benzopyran-3,6,9-trione, 11-(acetyloxy)-1,6b,7,8,9a,10,11,11b-octahydro-1-(methoxymethyl)-9a,11b-dimethyl-, (1s,6br,9as,11r,11br)
19545-26-7
sl-2052
nsc-627609
wortmannin ,
nsc627609
NSC221019 ,
nsc-221019
2-oxaandrosta-5,5,4-bc]furan-3,7,17-trione, 11-(acetyloxy)-1-(methoxymethyl)-, (1.alpha.,11.alpha.)-
3h-furo[4,2-de]indeno[4,5,-h]-2-benzopyran-3,6,9-trione, 11-(acetyloxy)-1,6b,7,8,9a,10,11,11b-octahydro-1-(methoxymethyl)-9a,11b-dimethyl-, (1s,6br,9as,11r,11br)
mls002703028 ,
NCI60_001835
NCHEMBIO866-COMP1
wortmannin, from penicillium funiculosum, >=98% (hplc and tlc)
MEGXM0_000446
BSPBIO_001232
ACON0_000951
octahydro-1-(methoxymethyl)-9a,11b-dimethyl-, [1s-(1alpha,6baalpha,9abeta,11alpha,11bbeta)]-
3h-furo[4,3,2-de]indeno[4,5-h]-2-benzopyran-3,6,9-trione, 11-(acetyloxy)-1,6b,7,8,9a,10,11,11b-
(1alpha,11alpha)-11-(acetyloxy)-1-(methoxymethyl)-2-oxaandrosta-5,8-dieno(6,5,4-bc)furan-3,7,17-trione
3h-furo[4,3,2-de]indeno[4,5-h]-2-benzopyran-3,6,9-trione, 11-(acetyloxy)-1,
wartmannin
ky 12420
antibiotic sl-2052
6b,7,8,9a,10,11,11b-octahydro-1-(methoxymethyl)-9a,11b-dimethyl-, (1s,6br,9as,11r,11br)-
CU-00000000011-1
ky-12420
NCGC00163485-01
NCGC00163485-02
(1r,6br,9as,11r,11br)-1-(methoxymethyl)-9a,11b-dimethyl-3,6,9-trioxo-1,6,6b,7,8,9,9a,10,11,11b- decahydro-3h-furo[4,3,2-de]indeno[4,5-h]isochromen-11-yl acetate
(1s,6br,9as,11r,11br)-1-(methoxymethyl)-9a,11b-dimethyl-3,6,9-trioxo-1,6,6b,7,8,9,9a,10,11,11b-decahydro-3h-furo[4,3,2-de]indeno[4,5-h]isochromen-11-yl acetate
(1r,3r,5s,9r,18s)-18-(methoxymethyl)-1,5-dimethyl-6,11,16-trioxo-13,17-dioxapentacyclo[10.6.1.0^{2,10}.0^{5,9}.0^{15,19}]nonadeca-2(10),12(19),14-trien-3-yl acetate
chembl428496 ,
wortmannin, wm
bdbm15234
cid_312145
(1s,6br,9as,11r,11br)-9a,11b-dimethyl-1-[(methyloxy)methyl]-3,6,9-trioxo-1,6,6b,7,8,9,9a,10,11,11b-decahydro-3h-furo[4,3,2-de]indeno[4,5-h]isochromen-11-yl acetate
CHEBI:52289 ,
HMS1990N13
DB08059
HMS1792N13
xva4o219qw ,
4-19-00-03134 (beilstein handbook reference)
unii-xva4o219qw
S2758
gtpl6060
CCG-208290
ST-415
SCHEMBL4531
CS-5073
(1s,6br,9as,11r,11br)-1-(methoxymethyl)-9a,11b-dimethyl-3,6,9-trioxo-3,6,6b,7,8,9,9a,10,11,11b-decahydro-1h-furo[4,3,2-de]indeno[4,5-h]isochromen-11-yl acetate
QDLHCMPXEPAAMD-QAIWCSMKSA-N
3h-furo(4,3,2-de)indeno(4,5-h)-2-benzopyran-3,6,9-trione, 11-(acetyloxy)-1,6b,7,8,9a,10,11,11b-octahydro-1-(methoxymethyl)-9a,11b-dimethyl-, (1s,6br,9as,11r,11br)-
wortmannin [mi]
(+)-wortmannin
HY-10197
HMS3403N13
DTXSID8040642
wortmannin, penicillium funiculosum
mfcd00133927
AKOS027327288
wortmannin,penicillium wortmannin
J-012661
3,2-de]indeno[4,5-h][2]benzopyran-11-yl acetate
(1s,6br,9as,11r,11br)-9a,11b-dimethyl-1-[(methyloxy)methyl]-3,6,9-trioxo-1,6,6b,7,8,9,9a,10,11,11b-decahydro-3h-furo[4,
wortmannin - cas 19545-26-7
(1s,6br,9as,11r,11br)-1-(methoxymethyl)-9a,11b-dimethyl-3,6,9-trioxo-3,6,6b,7,8,9,9a,10,11,11b-decahydro-1h-furo[4,3,2-de]indeno[4,5-h]isochromen-11-yl acetate.
BS-16306
ky12420
[(1r,3r,5s,9r,18s)-18-(methoxymethyl)-1,5-dimethyl-6,11,16-trioxo-13,17-dioxapentacyclo[10.6.1.02,10.05,9.015,19]nonadeca-2(10),12(19),14-trien-3-yl] acetate
3h-furo[4,3,2-de]indeno[4,5-h]-2-benzopyran-3,6,9-trione,11-(acetyloxy)-1,6b,7,8,9a,10,11,11b-octahydro-1-(methoxymethyl)-9a,11b-dimethyl-, (1s,6br,9as,11r,11br)-
sl-2052;ky-12420
EX-A1930
wortmannin; sl-2052; ky-12420
wortmannin, from penicillium funiculosum
(1s,6br,9as,11r,11br)-1-(methoxymethyl)-9a,11b-dimethyl-3,6,9-trioxo-1,6,6b,7,8,9,9a,10,11,11b-decahydro-3h-furo[4,3,2-de]indeno[4,5-h]isochromen-11-ylacetate
3h-furo[4,3,2-de]indeno[4,5-h]-2-benzopyran-3,6,9-trione, 11-(acetyloxy)-1,6b,7,8,9a,10,11,11b-octahydro-1-(methoxymethyl)-9a,11b-dimethyl-, (1s,6br,9as,11r,11br)-
AC-35862

Research Excerpts

Overview

Wortmannin is a cytotoxic compound derived from the endophytic fungi Fusarium oxysporum, Penicillium wortmannii and Penicilium funiculosum that occurs in many plants. It is a specific inhibitor of PI3K/Akt kinase pathway activation of which was found to play a role in infarct size limiting mechanisms in the rat heart.

ExcerptReferenceRelevance
"Wortmannin is a potent covalent inhibitor of PI3K that shows substantial in vivo toxicity and thus is unsuitable for systemic therapeutic applications. "( Synthesis and PI3 Kinase Inhibition Activity of a Wortmannin-Leucine Derivative.
Cantrell, W; Huang, Y; Kulik, G; Menchaca, AA; Welker, ME, 2018
)
2.18
"Wortmannin is a cytotoxic compound derived from the endophytic fungi Fusarium oxysporum, Penicillium wortmannii and Penicillium funiculosum that occurs in many plants, including medicinal herbs. "( Pharmacogenomic and molecular docking studies on the cytotoxicity of the natural steroid wortmannin against multidrug-resistant tumor cells.
Börtzler, J; Efferth, T; Greten, HJ; Kadioglu, O; Khalid, H; Kuete, V; Saeed, ME, 2015
)
2.08
"Wortmannin is a specific inhibitor of PI3K/Akt kinase pathway activation of which was found to play a role in infarct size limiting mechanisms in the rat heart."( Influence of ischemia/reperfusion and modulation of PI3K/Akt kinase pathway on matrix metalloproteinase-2 in rat hearts.
Barancík, M; Ivanová, M; Matejíková, J; Ravingerová, T; Spániková, A, 2010
)
1.08
"Wortmannin is a widely used pharmaceutical compound which is employed to define vesicular trafficking routes of particular proteins or cellular compounds. "( Wortmannin treatment induces changes in Arabidopsis root proteome and post-Golgi compartments.
Eck, C; Niehaus, K; Ovečka, M; Pechan, T; Richter, H; Samaj, J; Samajová, O; Takáč, T, 2012
)
3.26
"Wortmannin (WM) is known to be an irreversible and potent inhibitor of DNA-PK and has thus been proposed as an effective sensitizer for ionizing radiation and for radiomimetic compounds."( Wortmannin enhances the induction of micronuclei by low and high LET radiation.
Castro, M; Fernandes, AP; Gil, OM; Gonçalves, IC; Oliveira, NG; Rodrigues, AS; Rueff, J; Toscano-Rico, JM, 2003
)
2.48
"Wortmannin (WM) is a potent inhibitor of the catalytic sub-unit of DNA-PK, which is involved in one pathway of DNA double-strand break (DSB) rejoining, and of ATM, which functions upstream in the p53 signaling pathway. "( Relationship between the radiosensitizing effect of wortmannin, DNA double-strand break rejoining, and p21WAF1 induction in human normal and tumor-derived cells.
Andrais, B; Enns, L; Mirzayans, R; Murray, D; Pollock, S; Scott, A, 2004
)
2.02
"Wortmannin is an effective tool for reproducing Alzheimer-like tau hyperphosphorylation cell model and melatonin/vitamin E can effectively protect the cells from wortmannin-induced impairments."( Effects of melatonin on wortmannin-induced tau hyperphosphorylation.
Deng, YQ; Duan, P; Wang, JZ; Xu, GG; Zhang, Q, 2005
)
2.08
"Wortmannin (Wm, 1) is an inhibitor of PI3 kinase with high specificity for this enzyme."( Synthesis and activity of C11-modified wortmannin probes for PI3 kinase.
Cantley, L; Field, S; Josephson, L; Luo, J; Weissleder, R; Yuan, H,
)
1.12
"Wortmannin is a potent enzyme inhibitor that binds to the ATP site of important regulatory kinases such as PI-3 kinase and Polo-like kinase."( Chemistry and biology of wortmannin.
Halter, RJ; Wipf, P, 2005
)
1.35
"Wortmannin is a steroid-derived fungal metabolite that covalently inhibits both protein and lipid kinases."( A cell-permeable, activity-based probe for protein and lipid kinases.
Cimprich, KA; Fas, SC; Stohlmeyer, MM; Wandless, TJ; Yee, MC, 2005
)
1.05
"Wortmannin is a fungal metabolite that so far has been shown to act as a selective inhibitor of phosphoinositide 3-kinase. "( Wortmannin as a unique probe for an intracellular signalling protein, phosphoinositide 3-kinase.
Hazeki, K; Hazeki, O; Okada, T; Ui, M, 1995
)
3.18
"Wortmannin is a potent and reversible inhibitor of insulin-stimulated PtdIns 3-kinase activity in 3T3-L1 cells (IC50 = 2.6 +/- 0.8 nM). "( Inhibition of the translocation of GLUT1 and GLUT4 in 3T3-L1 cells by the phosphatidylinositol 3-kinase inhibitor, wortmannin.
Clarke, JF; Holman, GD; Kasuga, M; Yonezawa, K; Young, PW, 1994
)
1.94
"Wortmannin was found not to be an inhibitor of phosphatidylinositol-4-kinase, protein kinase C, or protein tyrosine kinase."( Wortmannin, a potent and selective inhibitor of phosphatidylinositol-3-kinase.
Abraham, R; Ashendel, C; Berggren, MM; Bonjouklian, R; Dodge, J; Gallegos, A; Grindey, G; Matter, WF; Powis, G; Zalkow, L, 1994
)
2.45
"Wortmannin is known to be an inhibitor of myosin light chain kinase and phosphatidylinositol 3-kinase (PI 3-kinase) (J. "( Effects of wortmannin on glucose uptake and protein kinase C activity in rat adipocytes.
Ishizuka, T; Itaya, S; Kajita, K; Nagashima, T; Nozawa, Y; Wada, H; Yamada, K; Yamamoto, M; Yasuda, K, 1995
)
2.12
"Wortmannin is an inhibitor of both PI 3-Ks, known to act with more potency on p85/PI 3-K."( Phosphoinositide 3-kinase gamma and p85/phosphoinositide 3-kinase in platelets. Relative activation by thrombin receptor or beta-phorbol myristate acetate and roles in promoting the ligand-binding function of alphaIIbbeta3 integrin.
Cunningham, MC; Rittenhouse, SE; Shattil, SJ; Zhang, J, 1996
)
1.02
"Wortmannin is an inhibitor of phosphatidylinositol (PI) 3'-kinase, a cellular kinase activated by docking to phosphotyrosyl residues of insulin receptor substrate-1 (IRS-1) that can also phosphorylate serine residues on IRS-1 in vitro. "( Differential regulation of insulin-stimulated tyrosine phosphorylation of IRS-1 and SHC by Wortmannin in intact cells.
Goldstein, BJ; Li, PM, 1996
)
1.96
"Wortmannin is a specific inhibitor of phosphatidylinositol 3 kinase (PI-3 kinase)."( Pharmacologic study of basophil histamine release induced by monocyte chemotactic protein-1 with kinase inhibitors.
Hirai, K; Ito, K; Kasahara, T; Kihara, H; Kitani, S; Morita, Y; Suzuki, M; Takaishi, T, 1996
)
1.02
"Wortmannin is a specific phosphatidylinositol 3-kinase inhibitor, and it inhibits secretion in many cell types. "( Inhibition of protein kinase C-dependent noradrenaline release by wortmannin in PC12 cells.
Murayama, T; Nomura, Y; Oda, H, 1997
)
1.98
"Wortmannin is a natural product that inhibits signal transduction. "( STT4 is an essential phosphatidylinositol 4-kinase that is a target of wortmannin in Saccharomyces cerevisiae.
Cardenas, ME; Cutler, NS; Heitman, J, 1997
)
1.97
"Wortmannin is a selective inhibitor of PI 3-kinase and was shown to significantly inhibit the acrosome reaction induced by both mannose-bovine serum albumin (mannose-BSA) (10, 50 and 100 nM) and a polyclonal antibody raised against an extracellular region of the sperm zona receptor kinase (ZRK, at 100 nM only)."( Phosphoinositide 3-kinase is involved in the induction of the human sperm acrosome reaction downstream of tyrosine phosphorylation.
Barratt, CL; Brewis, IA; Cooke, ID; Fisher, HM; Moore, HD, 1998
)
1.02
"Wortmannin is a potent inhibitor of phosphatidylinositol (PI) 3-kinase and PI 3-kinase-related proteins (e.g. "( Effects of the protein kinase inhibitors wortmannin and KN62 on cellular radiosensitivity and radiation-activated S phase and G1/S checkpoints in normal human fibroblasts.
Enns, L; Mirzayans, R; Murray, D, 1999
)
2.01
"Wortmannin is a potent inhibitor of phosphatidylinositol 3-kinase (PI3K) and membrane trafficking in many cells. "( Inhibition of phosphatidylinositol 3-kinase does not alter forskolin-stimulated Cl(-) secretion by T84 cells.
Conner, TD; Dickson, JL; Ecay, TW, 2000
)
1.75
"Wortmannin is an inhibitor of PI3-kinase and acts on cultured cells at dosages below 1 microM. "( Low dose of wortmannin reduces radiosensitivity of human glioblastoma cells through the p53 pathway.
Ikeda, M; Matsuda, N; Morita, N; Okaichi, K; Okumura, Y; Suzuki, K; Takahashi, H; Watanabe, M,
)
1.95
"Wortmannin is an irreversible inhibitor of the oxidative burst, but does not inhibit NADPH oxidase or known components of signal transduction."( Activation of human neutrophil phospholipase D by three separable mechanisms.
McIntyre, TM; Prescott, SM; Reinhold, SL; Zimmerman, GA, 1990
)
1

Effects

Wortmannin has been reported to be a highly selective inhibitor of phosphoinositide 3-kinase and myosin light chain kinase. It has no effect on cyclic PIP synthase activity nor on the substrate production for cyclIC PIP synthesis either.

ExcerptReferenceRelevance
"Wortmannin has been reported to be a highly selective inhibitor of phosphoinositide 3-kinase and myosin light chain kinase activity."( Wortmannin induces zebrafish cardia bifida through a mechanism independent of phosphoinositide 3-kinase and myosin light chain kinase.
Dong, Y; Jiang, Q; Qian, L; Song, H; Tan, L; Wang, Y; Zhong, T, 2005
)
2.49
"Wortmannin has no effect on focal adhesion or actin stress fibre formation induced by lysophosphatidic acid, bombesin or microinjected recombinant rho protein."( Activation of the small GTP-binding proteins rho and rac by growth factor receptors.
Hall, A; Hawkins, P; Nobes, CD; Stephens, L, 1995
)
1.01
"Wortmannin has previously been reported to be an inhibitor of myosin light chain kinase but with an inhibitory concentration of 0.2 microM."( Wortmannin, a potent and selective inhibitor of phosphatidylinositol-3-kinase.
Abraham, R; Ashendel, C; Berggren, MM; Bonjouklian, R; Dodge, J; Gallegos, A; Grindey, G; Matter, WF; Powis, G; Zalkow, L, 1994
)
2.45
"Wortmannin has previously been reported to inhibit calcium entry in thrombin-stimulated human platelets. "( Wortmannin interferes with thrombin-evoked secondary calcium redistribution in human platelets.
Brüne, B; Ullrich, V; von Appen, F, 1997
)
3.18
"Wortmannin has been shown to be a non-competitive and irreversible inhibitor of PI3 kinase. "( Wortmannin, an inhibitor of phosphatidyl-inositol 3-kinase, induces oocyte maturation through a MPF-MAPK-dependent pathway.
Carnero, A; Lacal, JC, 1998
)
3.19
"Wortmannin has been shown to be an efficient radiosensitizer. "( Wortmannin sensitizes mammalian cells to radiation by inhibiting the DNA-dependent protein kinase-mediated rejoining of double-strand breaks.
Chernikova, SB; Elkind, MM; Wells, RL, 1999
)
3.19
"Wortmannin, which has been shown to selectively inhibit force and myosin light chain (MLC) phosphorylation in the guinea-pig ureter, did not affect electrical activity or Ca2+ but significantly increased the delay, suggesting that myosin phosphorylation is a major contributor to it."( The relationship between the action potential, intracellular calcium and force in intact phasic, guinea-pig uretic smooth muscle.
Burdyga, TV; Wray, S, 1999
)
1.02
"Wortmannin has no effect on cyclic PIP synthase activity nor on the substrate production for cyclic PIP synthesis either, indicating that the functional role of PI 3-kinase is exclusively downstream of cyclic PIP."( Phosphatidylinositol 3-kinase and prostaglandylinositol cyclic phosphate (cyclic PIP), a mediator of insulin action, in the signal transduction of insulin.
Gypakis, A; Wasner, HK, 2000
)
1.03

Actions

Wortmannin and U0126 can suppress the promoting effect of insulin on the differentiation of skeletal myoblasts into myocytes in rats. The amount of the protein and its enzymatic activity were increased. Wortmanin can inhibit PI3K/Akt signal transduction pathway.

ExcerptReferenceRelevance
"Wortmannin and U0126 can suppress the promoting effect of insulin on the differentiation of skeletal myoblasts into myocytes in rats and decrease the formation of myotubes and the expression of myogenin."( [Wortmannin and U0126 inhibit the promoting effect of insulin on differentiation of skeletal myoblasts in rats].
Chen, P; Li, X; Xu, L; Yu, H; Zhao, Y; Zhou, X; Zou, H, 2014
)
2.76
"Wortmannin can inhibit PI3K/Akt signal transduction pathway."( [Effects of PI3K signaling pathway on pathogenesis of ulcerative colitis].
Gan, HT; Huang, XL; Liao, ZB; Yin, J; Zheng, YX, 2008
)
1.07
"Wortmannin could not inhibit MMP-2 secretion and activity and conversely the amount of the protein and its enzymatic activity were increased."( The effect of TGF-beta2 on MMP-2 production and activity in highly metastatic human bladder carcinoma cell line 5637.
Aryan, H; Ataei, Z; Dehnavi, E; Samiei, S; Soheili, ZS, 2009
)
1.07
"Wortmannin did not inhibit pH-stimulated ileal Na(+) absorption."( Acid-base effects on intestinal Na(+) absorption and vesicular trafficking.
Alexander-Chacko, J; Cassai, N; Charney, AN; Egnor, RW; Sidhu, GS, 2002
)
1.04
"Wortmannin, however, did produce a partial (approximately 50%) concentration-dependent inhibition of Fc epsilon RI-mediated degranulation in human mast cells and a partial inhibition of the later calcium response at higher concentrations."( The phospholipase C gamma 1-dependent pathway of Fc epsilon RI-mediated mast cell activation is regulated independently of phosphatidylinositol 3-kinase.
Beaven, MA; Brachman, SM; Gilfillan, AM; Metcalfe, DD; Tkaczyk, C, 2003
)
1.04
"Wortmannin can inhibit proliferation and migration of endothelial cells induced by HGMCM, suggesting that wortmannin carries an anti-angiogenetic ability in diseased retina."( [Effect of wortmannin on endothelial cell proliferation and migration induced by high glucose Müller cell conditioned medium].
Ni, JS; Shi, B; Wang, XR; Wang, XY; Wang, YH; Wu, JX; Xin, Y, 2005
)
2.16
"Wortmannin continued to inhibit eNOS activation by ATP in the presence of ca-Akt; LY294002 still had no inhibitory effect."( Pregnancy-enhanced endothelial nitric oxide synthase (eNOS) activation in uterine artery endothelial cells shows altered sensitivity to Ca2+, U0126, and wortmannin but not LY294002--evidence that pregnancy adaptation of eNOS activation occurs at multiple
Bird, IM; Grummer, MA; Sullivan, JA; Yi, FX, 2006
)
1.25
"Wortmannin displays a weaker inhibitory effect on phosphorylation of PI3-kinase pathway target PKB as compared with LY294002, and does not downregulate mES cells proliferation, while LY294002 causes a strong decrease in the share of cells in S-phase and accumulation of cells in G1 phase."( [PI3-kinase inhibitors LY294002 and wortmannin have different effects on proliferation of murine embryonic stem cells].
Chuĭkin, IA; Lianguzova, MS; Nordheim, A; Pospelov, VA, 2006
)
1.33
"Wortmannin did not inhibit basal glucose transport activity."( Inhibition of the translocation of GLUT1 and GLUT4 in 3T3-L1 cells by the phosphatidylinositol 3-kinase inhibitor, wortmannin.
Clarke, JF; Holman, GD; Kasuga, M; Yonezawa, K; Young, PW, 1994
)
1.22
"Wortmannin was found to inhibit the stimulation of tyrosine phosphorylation by fMet-Leu-Phe, and by the inflammatory microcrystals monosodium urate and calcium pyrophosphate dihydrate. "( Inhibition of tyrosine phosphorylation by wortmannin in human neutrophils. Dissociation from its inhibitory effects on phospholipase D.
Bourgoin, S; Caon, AC; Gaudry, M; Gilbert, C; Naccache, PH; Poubelle, PE; Roberge, CJ, 1993
)
1.99
"Wortmannin also fails to inhibit either of the Fc epsilon R1-coupled tyrosine kinases, Lyn or Syk, or the activation of mitogen-activated protein kinase as measured by in vitro kinase assays."( Wortmannin blocks lipid and protein kinase activities associated with PI 3-kinase and inhibits a subset of responses induced by Fc epsilon R1 cross-linking.
Barker, SA; Caldwell, KK; Hall, A; Martinez, AM; Oliver, JM; Pfeiffer, JR; Wilson, BS, 1995
)
2.46
"Wortmannin did not inhibit PKC directly in vitro, or the PKC-dependent effects of phorbol esters on glucose transport in intact adipocytes."( The phosphatidylinositol 3-kinase inhibitor, wortmannin, inhibits insulin-induced activation of phosphatidylcholine hydrolysis and associated protein kinase C translocation in rat adipocytes.
Avignon, A; Bandyopadhyay, G; Farese, RV; Standaert, ML; Yamada, K, 1996
)
1.28
"Wortmannin and LY294002 inhibit the Gbetagamma-responsive PI 3-kinase activity with IC50 values of 10 nM and 2 microM, respectively."( Purification and characterization of Gbetagamma-responsive phosphoinositide 3-kinases from pig platelet cytosol.
Downes, CP; Tang, X, 1997
)
1.02
"Wortmannin did not inhibit the A23187- or progesterone-induced acrosome reaction."( Phosphoinositide 3-kinase is involved in the induction of the human sperm acrosome reaction downstream of tyrosine phosphorylation.
Barratt, CL; Brewis, IA; Cooke, ID; Fisher, HM; Moore, HD, 1998
)
1.02
"Wortmannin did not inhibit tyrosine phosphorylation of IkappaB-alpha or alter the stability of the PI3-kinase complex but inhibited Akt kinase activation in response to pervanadate."( Involvement of regulatory and catalytic subunits of phosphoinositide 3-kinase in NF-kappaB activation.
Baeuerle, PA; Béraud, C; Henzel, WJ, 1999
)
1.02
"Wortmannin was shown to inhibit DNA-PK and Ku-DNA binding activity in CEM/VLB100 cells dose dependently but had a little or no effect on their parental cells."( Potentiation of chemosensitivity in multidrug-resistant human leukemia CEM cells by inhibition of DNA-dependent protein kinase using wortmannin.
Chung, BS; Dong-Won, B; Kang, CD; Kim, DW; Kim, SH; Kwon, BH; Um, JH, 2000
)
1.23
"Wortmannin was found to inhibit both uptake and degradation of ovalbumin."( Wortmannin-sensitive trafficking steps in the endocytic pathway in rat liver endothelial cells.
Berg, T; Brech, A; Griffiths, G; Kjeken, R; Mousavi, SA, 2001
)
2.47
"Wortmannin was found to inhibit PKB/Akt phosphorylation in a time- and dose-dependent manner, reaching a plateau at 4 h and at 0.7 mg/kg."( Wortmannin inhibits pkb/akt phosphorylation and promotes gemcitabine antitumor activity in orthotopic human pancreatic cancer xenografts in immunodeficient mice.
Hedley, DW; Ng, SS; Nicklee, T; Tsao, MS, 2001
)
2.47
"Wortmannin did not inhibit the translocation of either GLUT1 or GLUT4."( Lactate-induced translocation of GLUT1 and GLUT4 is not mediated by the phosphatidyl-inositol-3-kinase pathway in the rat heart.
Fuller, W; Garlick, PB; Medina, RA; Southworth, R, 2002
)
1.04
"Wortmannin did not inhibit other fMPL-stimulated events, such as aggregation or adherence."( Activation of human neutrophil phospholipase D by three separable mechanisms.
McIntyre, TM; Prescott, SM; Reinhold, SL; Zimmerman, GA, 1990
)
1

Treatment

Wortmannin treatment increased intracellular cAMP levels up to 25-fold. Total PKA activity also increased within 10 min of wortmanniin exposure. Treatment did not prevent neurite retraction induced by lyso-PtdH or thrombin.

ExcerptReferenceRelevance
"Wortmannin-treated leaves had significantly lower Atg16 protein and higher anthocyanin levels compared to the control."( The role of Atg16 in autophagy, anthocyanin biosynthesis, and programmed cell death in leaves of the lace plant (Aponogeton madagascariensis).
Dauphinee, AN; Gunawardena, AHLAN; Lacroix, CR; Rowarth, NM, 2023
)
1.63
"Wortmannin pretreatment could aggravate the histological injury and decrease axonal density after HI."( [The regulation of Akt signaling on axonal density after hypoxic-ischemic brain injury in neonatal rat].
Chen, HJ; Luo, BR; Mu, DZ; Qu, Y; Xiong, T, 2013
)
1.11
"Both wortmannin treatment and ARA7(Q69L) expression can induce PVC homotypic fusion and PVC enlargement in plant cells."( Analysis of prevacuolar compartment-mediated vacuolar proteins transport.
Cai, Y; Gao, C; Jiang, L; Zhuang, X, 2014
)
0.86
"In wortmannin-treated cells, the vacuolated PVCs contained the mRFP-AtVSR reporter in their limiting membranes, whereas the soluble aleurain-GFP or 2S albumin-GFP remained in the lumen of the PVCs, indicating a possible in vivo relationship between receptor and cargo within PVCs."( The vacuolar transport of aleurain-GFP and 2S albumin-GFP fusions is mediated by the same pre-vacuolar compartments in tobacco BY-2 and Arabidopsis suspension cultured cells.
Jiang, L; Li, HY; Li, KY; Miao, Y; Yao, X, 2008
)
0.86
"Wortmannin treatment increased apoptosis in the remote myocardium both at baseline and after MI, together with an activation of the PKC-δ/p38-MAPK-pathway."( Inhibition of anti-apoptotic signals by Wortmannin induces apoptosis in the remote myocardium after LAD ligation: evidence for a protein kinase C-δ-dependent pathway.
Ebner, B; Jercke, M; Joachim, D; Schwarz, K; Simonis, G; Strasser, RH; Wessela, T; Wiedemann, S, 2013
)
1.38
"Wortmannin treatment inhibited EGF-mediated but not Ang II-mediated phosphorylation of ERK."( Role of EGFR transactivation in angiotensin II signaling to extracellular regulated kinase in preglomerular smooth muscle cells.
Andresen, BT; Jackson, EK; Linnoila, JJ; Romero, GG, 2003
)
1.04
"Wortmannin treatment inhibited the PLDR in SAS/neo tumors very effectively, but showed no apparent effect on either total or Q tumor cells within SAS/mp53 tumors."( Effects of p53 status and wortmannin treatment on potentially lethal damage repair, with emphasis on the response of intratumor quiescent cells.
Kinashi, Y; Masunaga, S; Nagata, K; Ohnishi, K; Ohnishi, T; Ono, K; Suzuki, M; Takahashi, A,
)
1.15
"Wortmannin treatment also increased the number of macrophages in the liver and kidney of endotoxemic mice."( PI3K-Akt pathway suppresses coagulation and inflammation in endotoxemic mice.
Mackman, N; Pawlinski, R; Pedersen, B; Schabbauer, G; Tencati, M, 2004
)
1.04
"Wortmannin treatment inhibited the antiapoptotic effect of BMP-2."( BMP-2 prevents apoptosis of the N1511 chondrocytic cell line through PI3K/Akt-mediated NF-kappaB activation.
Higa, S; Kimura, T; Kitajima, I; Matsui, K; Motomura, H; Sugimori, K; Tokoro, T; Wang, J, 2005
)
1.05
"Wortmannin treatment enhanced NMD reporter expression in our system in a dose-dependent way, illustrating its utility for small molecule screening."( A chemiluminescence-based reporter system to monitor nonsense-mediated mRNA decay.
Boelz, S; Gehring, NH; Hentze, MW; Kulozik, AE; Neu-Yilik, G, 2006
)
1.06
"Wortmannin treatment increased intracellular cAMP levels up to 25-fold; total PKA activity also increased within 10 min of wortmannin exposure."( Evidence that a wortmannin-sensitive signal transduction pathway regulates aflatoxin biosynthesis.
Lee, JW; Linz, JE; Roze, LV,
)
1.2
"Wortmannin treatment can lead to decreased expression of GLUT4 and increase of IR granulose cells. "( [Induction of insulin resistance induced by PI-3K inhibitor in porcine granulosa cells].
Hou, LH; Song, JJ; Wu, XK; Yan, ME, 2008
)
1.79
"Wortmannin treatment pre- or post-serum stimulation inhibits phosphorylation of the same set of sites as rapamycin, supporting the argument that both agents act on the same pathway."( Rapamycin, wortmannin, and the methylxanthine SQ20006 inactivate p70s6k by inducing dephosphorylation of the same subset of sites.
Dennis, PB; Han, JW; Pearson, RB; Thomas, G, 1995
)
1.4
"Wortmannin pretreatment for 1 h inhibited endothelin-induced Ito cell contraction dose-dependently."( Integrity of myosin light chain kinase is essential for Ito cell contraction.
Hirose, M; Kitamura, T; Miyazaki, A; Oide, H; Sato, N; Shimizu, H; Suzuki, S; Wang, XE; Watanabe, S; Yumoto, A, 1995
)
1.01
"Wortmannin-treated cells display an increased endocytic rate constant for transferrin internalization and decreased exocytic rate constants for transferrin recycling."( Wortmannin alters the transferrin receptor endocytic pathway in vivo and in vitro.
Boll, W; Kirchhausen, T; Spiro, DJ; Wessling-Resnick, M, 1996
)
2.46
"Wortmannin treatment did not prevent neurite retraction induced by lyso-PtdH or thrombin."( Nerve growth factor promotes activation of the alpha, beta and gamma isoforms of protein kinase B in PC12 pheochromocytoma cells.
Alessi, DR; Andjelković, M; Frech, M; Hemmings, BA; Meier, R; Suidan, HS, 1998
)
1.02
"The wortmannin treatment also resulted in an alteration in focal adhesion distribution from the processes to cell bodies."( Hepatic stellate cells (vitamin A-storing cells) change their cytoskeleton structure by extracellular matrix components through a signal transduction system.
Imai, K; Kojima, N; Matano, Y; Miura, M; Sato, M; Senoo, H, 1998
)
0.78
"In wortmannin-treated cells, transcytosing apical proteins traversed the subapical compartment (SAC), suggesting that this intermediate in the basolateral-to-apical transcytotic pathway remained functional."( Evidence for apical endocytosis in polarized hepatic cells: phosphoinositide 3-kinase inhibitors lead to the lysosomal accumulation of resident apical plasma membrane proteins.
Finnegan, CM; Hubbard, AL; Tuma, PL; Yi, JH, 1999
)
0.82
"Thus wortmannin-treated normal fibroblasts exhibit increased sensitivity to radiation-induced cell killing, lack of temporary block in transition from G1 to S phase following irradiation (i.e."( Effects of the protein kinase inhibitors wortmannin and KN62 on cellular radiosensitivity and radiation-activated S phase and G1/S checkpoints in normal human fibroblasts.
Enns, L; Mirzayans, R; Murray, D, 1999
)
1.02
"Wortmannin treatment was effective only when it was added early enough to prevent gamma-H2AX formation, indicating that gamma-H2AX is necessary for the recruitment of other factors to the sites of DNA damage."( A critical role for histone H2AX in recruitment of repair factors to nuclear foci after DNA damage.
Bonner, WM; Gellert, M; Kirchgessner, CU; Paull, TT; Rogakou, EP; Yamazaki, V,
)
0.85
"Wortmannin treatment released the Rab5 effector EEA1 from the endosomes and caused reduced size of early endosomes."( Wortmannin-sensitive trafficking steps in the endocytic pathway in rat liver endothelial cells.
Berg, T; Brech, A; Griffiths, G; Kjeken, R; Mousavi, SA, 2001
)
2.47
"Wortmannin treatment of melanocytes enhanced the distinct compartmentalization of these melanosomal/lysosomal membrane proteins by the swelling of the endosomal-lysosomal systems."( Evidence for distinct membrane traffic pathways to melanosomes and lysosomes in melanocytes.
Fujita, H; Furuta, K; Himeno, M; Sasano, E; Wada, I; Yasunaga, K; Yokota, S, 2001
)
1.03
"Pretreatment with wortmannin or cytochalasin B significantly reduced the virus uptake by the cells, suggesting the involvement of phosphatidylinositol 3-kinase (PI3K) signaling and phagocytosis in the interaction between the cells and the hybrid vectors."( Gene delivery via the hybrid vector of recombinant adeno-associated virus and polyethylenimine.
Hsu, PY; Yang, YW, 2014
)
0.73
"When treated with wortmannin, the ability to form colonies was significantly attenuated in both cell lines."( Distinct roles of Akt1 in regulating proliferation, migration and invasion in HepG2 and HCT 116 cells.
Chen, L; Chen, Y; Kang, QH; Li, Q; Wang, CJ; Xie, SQ; Zhang, YH, 2014
)
0.73
"Treatment with wortmannin alters the kinetics of P2X(1) activation and inactivation without changing its sensitivity to ATP."( Direct modulation of P2X1 receptor-channels by the lipid phosphatidylinositol 4,5-bisphosphate.
Ase, AR; Bernier, LP; Blais, D; Hamel, E; Logothetis, DE; Séguéla, P; Tong, X; Zhao, Q, 2008
)
0.69
"Pre-treatment with Wortmannin significantly (P < 0.05) inhibited LPS-induced secretion of MCP-1 and NO in a concentration dependent manner."( Nitric oxide and MCP-1 regulation in LPS activated rat Kupffer cells.
Kolios, G; Kouroumalis, E; Manousou, P; Notas, G; Valatas, V; Xidakis, C, 2008
)
0.66
"Pretreatment with wortmannin, a PI3K/Akt pathway inhibitor, significantly inhibited p-Akt expression and further attenuated both transcription and translation of HIF-1alpha and VEGF."( Signaling pathway involved in hypoxia-inducible factor-1alpha regulation in hypoxic-ischemic cortical neurons in vitro.
Ferriero, D; Mao, M; Mu, D; Qu, Y; Tang, J; Yang, C; Zhang, L; Zhang, X, 2009
)
0.68
"Pretreatment with wortmannin modified neither arrhythmogenesis nor IS in the non-PC hearts."( Reduced susceptibility to ischemia-induced arrhythmias in the preconditioned rat heart is independent of PI3-kinase/Akt.
Kolar, F; Matejikova, J; Pancza, D; Ravingerova, T, 2009
)
0.68
"Treatment with wortmannin or transfection with a dominant negative form of Akt anticipated at 24 h the effects induced by PTX/LPC, suggesting a protective role against apoptosis played by Akt in Y79 cells."( Paclitaxel and beta-lapachone synergistically induce apoptosis in human retinoblastoma Y79 cells by downregulating the levels of phospho-Akt.
Augello, G; D'Anneo, A; di Fiore, R; Giuliano, M; Messina, C; Santulli, A; Tesoriere, G; Vento, R, 2010
)
0.7
"Treatment with wortmannin or N(omega)-nitro-l-arginine methyl ester significantly attenuated the phlebotomy-induced improvement of blood flow."( Repeated phlebotomy augments angiogenesis to improve blood flow in murine ischemic legs.
Aoyama, T; Fujiwara, H; Fujiwara, T; Goto, K; Kanamori, H; Kawaguchi, T; Kawamura, I; Maruyama, R; Minatoguchi, S; Shiraki, T; Takemura, G; Takeyama, T; Tsujimoto, A; Watanabe, T, 2010
)
0.7
"Treatment with wortmannin and specific Akt inhibitor abolished the anti-apoptotic effect of U50,488H."( U50,488H postconditioning reduces apoptosis after myocardial ischemia and reperfusion.
Gu, C; Guo, H; Kaye, AD; Li, J; Pei, J; Sun, Z; Tong, G; Wang, Y; Wei, X; Yi, D; Yu, S; Zhang, Q, 2011
)
0.71
"Treatment with wortmannin, an inhibitor of class III PI3K, mimicked the effects by PTEN overexpression, which implied a critical role for PI3P dynamics in these processes."( Overexpression of Arabidopsis thaliana PTEN caused accumulation of autophagic bodies in pollen tubes by disrupting phosphatidylinositol 3-phosphate dynamics.
Fox, E; Li, S; McCormick, S; Pao, J; Sun, W; Zhang, Y; Zhou, C; Zhou, LZ, 2011
)
0.71
"Treatment with wortmannin during the SIRPC period inhibited SIRPC-induced increase in phosphorylated-Akt and -Bad expressions and eliminated tolerance of SIRPC mice kidneys to I/R insult."( Previous ischemia and reperfusion injury results in resistance of the kidney against subsequent ischemia and reperfusion insult in mice; a role for the Akt signal pathway.
Cho, MH; Jang, HS; Kim, J; Kim, JI; Kim, KY; Park, KM, 2012
)
0.72
"Pretreatment with wortmannin blocked the AM-induced antiapoptotic effect."( Protective effect of adrenomedullin in mannitol-induced apoptosis.
Kim, HJ; Kim, SH; Kim, W; Koh, GY; Lee, S; Moon, SO; Park, SK; Sung, MJ, 2002
)
0.64
"Treatment with wortmannin increased necrosis in the tumors, and this was associated with apoptosis."( Phosphatidylinositol 3'-kinase is required for growth of mast cells expressing the kit catalytic domain mutant.
Bernstein, A; Linnekin, D; Shivakrupa, R; Watring, N, 2003
)
0.66
"Pretreatment of Wortmannin significantly reduced the EGF-induced OPN expression."( [EGF/PI3K signaling pathway regulates the expression of osteopontin in liver cancer HepG2 cells].
Lin, XW; Zhang, GX; Zhao, ZQ, 2003
)
0.65
"Pretreatment with wortmannin (300 nmol/l), an inhibitor of myosin light chain kinase, decreased both contractility and phosphorylation of myosin light chains in parallel."( Heat-shock response is associated with enhanced contractility of vascular smooth muscle in isolated rat aorta.
Cho, JW; Kang, BS; Kim, CY; Kim, IK; Kim, YH; Park, TG, 2004
)
0.65
"Treatment with wortmannin or calphostin C or the expression of dominant negative Akt inhibited phosphorylation of GSK-3beta at Ser-9 following the KCl-induced depolarization of SH-SY5Y cells."( Membrane depolarization induces the undulating phosphorylation/dephosphorylation of glycogen synthase kinase 3beta, and this dephosphorylation involves protein phosphatases 2A and 2B in SH-SY5Y human neuroblastoma cells.
Juhnn, YS; Kang, UG; Kim, SY; Kim, Y; Kim, YS; Lee, YI; Seo, M, 2005
)
0.67
"Treatment with wortmannin resulted in cell-type-dependent inhibition of transfection."( Quantitative aspects of endocytic activity in lipid-mediated transfections.
Prasad, TK; Rangaraj, N; Rao, NM, 2005
)
0.67
"Treatment with wortmannin, an inhibitor of phosphatidylinositol-3-phosphate kinase, prevents formation of the short dynamic tubules while increasing the number of the long and very stable ones."( Possible role of deep tubular invaginations of the plasma membrane in MHC-I trafficking.
Kirchhausen, T; Larsen, JE; Massol, RH, 2005
)
0.67
"Treatment with wortmannin or p85alpha siRNA reduced pancreatic regeneration after partial Px."( Aging is associated with decreased pancreatic acinar cell regeneration and phosphatidylinositol 3-kinase/Akt activation.
Evers, BM; Rychahou, PG; Saito, H; Uchida, T; Watanabe, H, 2005
)
0.67
"Treatment with wortmannin, a specific inhibitor of phosphatidylinositide 3-kinase (PI3K), did not block stabilin-1 mediated internalisation of acLDL as well as its trafficking to early endosomes, whereas it induced enlargement of stabilin-1/acLDL positive endosomes as well as partial dissociation of EEA1 from these structures."( Phosphatidylinositide 3-kinase activity is required for stabilin-1-mediated endosomal transport of acLDL.
Brundiers, H; Goerdt, S; Gratchev, A; Krusell, L; Kzhyshkowska, J; Mamidi, S, 2005
)
0.67
"Pretreatment with wortmannin attenuated hyperthermia-induced HSP72 expression and phosphorylation of Akt."( Phosphatidylinositol 3-kinase-dependent activation of akt, an essential signal for hyperthermia-induced heat-shock protein 72, is attenuated in streptozotocin-induced diabetic heart.
Hara, M; Nakagawa, M; Ooie, T; Saikawa, T; Shigematsu, S; Shinohara, T; Takahashi, N; Yonemochi, H; Yoshimatsu, H, 2006
)
0.66
"Pretreatment with wortmannin abolished the NRG-induced increase in protein synthesis, suggesting a critical role for PI3K in this response."( Neuregulin-dependent protein synthesis in C2C12 myotubes and rat diaphragm muscle.
Hellyer, NJ; Mantilla, CB; Park, EW; Sieck, GC; Zhan, WZ, 2006
)
0.66
"Upon treatment with wortmannin, PtdIns3P levels were reduced by approximately 40% within 15 min in both cell lines."( Visualization of PtdIns3P dynamics in living plant cells.
Divecha, N; Gadella, TW; Jones, DR; Laxalt, AM; Munnik, T; Tobeña-Santamaria, R; van Leeuwen, W; Vermeer, JE, 2006
)
0.65
"Pre-treatment with Wortmannin, LY 294002, PD 098,059 and SB 203580 caused a significant decrease in nitrite production, NOS type II protein expression and NOS type II mRNA expression induced by leptin and interferon-gamma co-stimulation."( Phosphatidylinositol 3-kinase, MEK-1 and p38 mediate leptin/interferon-gamma synergistic NOS type II induction in chondrocytes.
Gómez, R; Gomez-Reino, JJ; Gualillo, O; Lago, F; Lago, R; Otero, M, 2007
)
0.66
"Pretreatment with wortmannin, capsazepine, DNK333 (a dual neurokinin (NK) 1 and NK2 antagonist) or the anti-allergy drug CGS8515, but not indomethacin, resulted in partial inhibition."( In vivo pharmacological evaluation of compound 48/80-induced airways oedema by MRI.
Beckmann, N; Blé, FX; Cannet, C; Fozard, JR; Karmouty-Quintana, H; Page, CP; Zurbruegg, S, 2008
)
0.67
"Pretreatment with wortmannin almost completely suppressed all these activations."( Wortmannin inhibits insulin-induced Ras and mitogen-activated protein kinase activation related to adipocyte differentiation in 3T3-L1 fibroblasts.
Nomura, Y; Tokumitsu, Y; Uehara, T, 1995
)
2.06
"Treatment with wortmannin, an inhibitor of phosphatidylinositol 3-kinase (PI 3-kinase), or with rapamycin, an inhibitor of the pathway from the insulin receptor to p70/p85 ribosomal S6 protein kinase (p70(s6k)), prevented the induction of HKII mRNA by insulin."( Analysis of the signaling pathway involved in the regulation of hexokinase II gene transcription by insulin.
Granner, DK; Osawa, H; Printz, RL; Robey, RB; Sutherland, C, 1996
)
0.63
"Treatment with wortmannin inhibited norepinephrine-induced canalicular contraction and caused a decrease in bile flow without changing systematic and portal blood pressure. "( Effects of wortmannin, a novel myosin light-chain kinase inhibitor, on bile canalicular contraction in vitro and in vivo.
Hirose, M; Kitamura, T; Oide, H; Sato, N; Suzuki, S; Watanabe, S, 1996
)
1.04
"Treatment with wortmannin resulted in a dose-dependent decrease in chemotaxis with an IC50 value of about 15-20 nM."( Involvement of phosphatidylinositide 3'-kinase and Rac in platelet-derived growth factor-induced actin reorganization and chemotaxis.
Claesson-Welsh, L; Heldin, CH; Hooshmand-Rad, R; Siegbahn, A; Wennström, S; Yokote, K, 1997
)
0.64
"Treatment with wortmannin (a specific P13K inhibitor) leads to decreased AP-1 activity."( Mapping of polyomavirus middle T domain that is responsible for AP-1 activation.
Armelin, MC; Druker, BJ; Oliveira, ML; Roberts, TM, 1998
)
0.64
"Pretreatment with wortmannin inhibits ERK1 activation by C5b-9, suggesting the involvement of phosphatidylinositol 3-kinase (PI 3-kinase)."( Sublytic C5b-9 induces proliferation of human aortic smooth muscle cells: role of mitogen activated protein kinase and phosphatidylinositol 3-kinase.
Badea, T; Niculescu, F; Rus, H, 1999
)
0.63
"Pretreatment with wortmannin enhanced the radiosensitivity of ataxia telangiectasia (AT) cells, thereby precluding the participation of ATM protein in the radiation sensitization by wortmannin."( Wortmannin sensitizes mammalian cells to radiation by inhibiting the DNA-dependent protein kinase-mediated rejoining of double-strand breaks.
Chernikova, SB; Elkind, MM; Wells, RL, 1999
)
2.07
"Treatment with wortmannin promoted a prolonged activation of NF-kappaB in LPS-treated cells as well as an increase in the promoter activity of the iNOS gene as deduced from transfection experiments using a 1.7-kb fragment of the 5' flanking region of the iNOS gene."( Negative regulation by phosphatidylinositol 3-kinase of inducible nitric oxide synthase expression in macrophages.
Boscá, L; Castrillo, A; Díaz-Guerra, MJ; Martín-Sanz, P, 1999
)
0.64
"Posttreatment with wortmannin for last 3 h of culture also enhanced the yield of breakage-type chromatid aberrations and suppressed the yield of exchange-type chromatid aberrations almost completely."( Involvement of G2-dependent DNA double-strand break repair in the formation of ultraviolet light B-induced chromosomal aberrations.
Ikushima, T; Ishii, Y, 1999
)
0.62
"Pretreatment with wortmannin or genistein also inhibited the G(i)-mediated GLUT4 translocation."( Gi-mediated translocation of GLUT4 is independent of p85/p110alpha and p110gamma phosphoinositide 3-kinases but might involve the activation of Akt kinase.
Ebina, Y; Hagi, A; Hawkins, PT; Hayashi, H; Huang, L; Kishi, K; Tamaoka, K; Wang, L, 2000
)
0.63
"Pretreatment with wortmannin, a PI 3-kinase-specific inhibitor, completely blocked the Syk-dependent Akt activation."( Syk is required for the activation of Akt survival pathway in B cells exposed to oxidative stress.
Ding, J; Gao, S; Han, W; Noda, C; Takano, T; Yamamura, H; Yanagi, S, 2000
)
0.63
"Treatment with wortmannin reveals that Hrs phosphorylation also requires PI 3-kinase activity, which is necessary to generate the PI 3-P required for localization."( Endosomal localization and receptor dynamics determine tyrosine phosphorylation of hepatocyte growth factor-regulated tyrosine kinase substrate.
Clague, MJ; Kitamura, N; Mills, IG; Stenmark, H; Urbé, S, 2000
)
0.65
"Treatment with wortmannin or LY294002, a PI-3K inhibitor, or rapamycin, a p70S6k inhibitor, decreased basal levels of 5-bromo-2-deoxyuridine (BrdU)-labeling indices of lactotrophs in a dose-dependent manner."( Involvement of phosphoinositide-3-kinase and p70 S6 kinase in regulation of proliferation of rat lactotrophs in culture.
Arita, J; Kawashima, K; Yamakawa, K, 2000
)
0.65
"Pretreatment with wortmannin abolished the antiapoptotic effect of insulin."( Nitric oxide mediates the antiapoptotic effect of insulin in myocardial ischemia-reperfusion: the roles of PI3-kinase, Akt, and endothelial nitric oxide synthase phosphorylation.
Christopher, TA; Gao, E; Gao, F; Lopez, BL; Ma, XL; Ohlstein, EH; Yue, TL, 2002
)
0.64
"Pretreatment with wortmannin, a specific inhibitor of myosin light chain kinase, suppressed only the plateau phase and had no effect on the initial rapid increase in [Ca2+]i."( Two thrombin-activated Ca2+ channels in human platelets.
Hashimoto, Y; Kurokawa, K; Matsuda, Y; Nakanishi, S; Nonomura, Y; Ogihara, A, 1992
)
0.61

Toxicity

ExcerptReferenceRelevance
" Overexpression of a TOR1 kinase-inactive mutant, or of a central region of the TOR proteins distinct from the FRB and kinase domains, was toxic in yeast, and overexpression of wild-type TOR1 suppressed this toxic effect."( Protein kinase activity and identification of a toxic effector domain of the target of rapamycin TOR proteins in yeast.
Alarcon, CM; Cardenas, ME; Heitman, J, 1999
)
0.3
" Cells stably transfected with caveolin-1 were found to be much more sensitive to the toxic effects of sodium arsenite than either untransfected parental cells or parental cells transfected with an empty vector."( Caveolin-induced activation of the phosphatidylinositol 3-kinase/Akt pathway increases arsenite cytotoxicity.
Gorospe, M; Holbrook, NJ; Kokkonen, GC; Longo, DL; Shack, S; Wang, XT, 2003
)
0.32
" Phosphorylation at serine 473 of the Akt protein (P-Akt), a protein representing a common pathway for insulin receptors (IR), insulinlike growth factor receptors (IGFR), and hybrid receptors formed by IR and IGFR subunits, was abolished in the presence of toxic doses of the phenylalkylamine CCB verapamil."( Verapamil toxicity dysregulates the phosphatidylinositol 3-kinase pathway.
Bechtel, LK; Haverstick, DM; Holstege, CP, 2008
)
0.35
"3-Hydroxy-3-methylglutaryl CoA reductase inhibitors (statins) are safe and well-tolerated therapeutic drugs."( Possible mechanisms underlying statin-induced skeletal muscle toxicity in L6 fibroblasts and in rats.
Ichihara, K; Itagaki, M; Kaneta, S; Kano, S; Satoh, K; Takaguri, A, 2009
)
0.35
"The protective effect of the SAFE pathway is shown in IPostC, with the activation of TNFalpha, its receptor type 2, and STAT-3."( Ischaemic postconditioning protects against reperfusion injury via the SAFE pathway.
Lacerda, L; Lecour, S; Opie, LH; Somers, S, 2009
)
0.35
" The toxic response in cells either pretreated with PCB 52 and then treated with GO or concurrently treated with GO and PCB 52 did not differ significantly from the toxic response in the cells treated with PCB 52 alone."( Graphene Oxide Attenuates the Cytotoxicity and Mutagenicity of PCB 52 via Activation of Genuine Autophagy.
Chen, S; Dai, H; Deng, Z; Du, H; Hei, TK; Liu, Y; Nie, Y; Wang, J; Wang, M; Wang, X; Wu, L; Xu, A, 2016
)
0.43
" Dual mTORC1/mTORC2 inhibitor AZD2014 showed no considerable effects on embryonic cells of zebrafish in concentrations substantially toxic in cancer cells."( Comparative toxicity evaluation of targeted anticancer therapeutics in embryonic zebrafish and sea urchin models.
Babic, T; Buric, SS; Dinic, J; Hadzic, S; Pesic, M; Radojkovic, D; Rankov, AD, 2018
)
0.48
" Recent evidence indicates that small tau oligomers are the most relevant toxic aggregate species."( Cornel iridoid glycoside induces autophagy to protect against tau oligomer neurotoxicity induced by the activation of glycogen synthase kinase-3β.
Li, L; Li, X; Li, Y; Yang, C; Zhang, L, 2019
)
0.51
" However, the novel strategy is required to reduce life-threatening adverse effects of PNT including ischemic cardiovascular disease."( Involvement of MCL1, c-myc, and cyclin D2 protein degradation in ponatinib-induced cytotoxicity against T315I(+) Ph+leukemia cells.
Abe, A; Hayakawa, F; Ichihara, M; Inoue, C; Kawamoto, Y; Murate, T; Nishizawa, Y; Nozawa, Y; Sobue, S; Suzuki, M, 2020
)
0.56

Compound-Compound Interactions

ExcerptReferenceRelevance
" CNTFRalpha alone, or in combination with CNTF, elicited concentration-dependent macrophage chemotaxis that was inhibited by a neutralizing gp 130 antibody."( CNTFR alpha alone or in combination with CNTF promotes macrophage chemotaxis in vitro.
Kobayashi, H; Mizisin, AP, 2000
)
0.31
"Aim of the present study was to evaluate the effect of apigenin in combination with BRAFV600E inhibitor PLX4032 on cell survival, and to investigate the influence of Akt inhibition on the combined effect of apigenin and PLX4032 in ATC cells harboring BRAFV600E."( Akt inhibition enhances the cytotoxic effect of apigenin in combination with PLX4032 in anaplastic thyroid carcinoma cells harboring BRAFV600E.
Choi, MG; Ihm, SH; Kang, JG; Kim, CS; Kim, SH; Lee, SJ; Yoo, HJ, 2013
)
0.39

Bioavailability

ExcerptReferenceRelevance
" The IGFBPs exert their actions through their regulation of IGF bioavailability for IGF receptors."( Novel stimulatory role for insulin-like growth factor binding protein-2 in prostate cancer cells.
Cohen, P; Francis, MJ; Moore, MG; Peehl, DM; Wetterau, LA, 2003
)
0.32
"The insulin-like growth factor binding proteins (IGFBPs) represent a unique class of IGF antagonists regulating the bioavailability of the IGFs extracellularly."( Paradoxical effects of the phage display-derived peptide antagonist IGF-F1-1 on insulin-like growth factor-1 receptor signaling.
Robinson, SA; Rosenzweig, SA, 2006
)
0.33
"Curcumin is a natural polyphenolic compound that exhibits strong antioxidant and anticancer activities; however, low bioavailability has restricted its application in chemotherapeutic trials."( Novel curcumin analogue IHCH exhibits potent anti‑proliferative effects by inducing autophagy in A549 lung cancer cells.
Chen, XB; Sun, GC; Xu, SL; Zhou, GZ, 2014
)
0.4
"This study aimed to evaluate the effects of Wortmannin, an inhibitor of phosphatidylinositol 3-kinase (PI3K)/protein kinase B (Akt), on aortic hyporeactivity to Phenylephrine (Phe) and nitric oxide bioavailability associated with pregnancy in hypertensive rats."( The PI3K-Akt-eNOS pathway is involved in aortic hyporeactivity to Phenylephrine associated with late pregnancy in spontaneously hypertensive rats.
Antoniali, C; Cavalari, P; Potje, SR; Sumida, DH; Troiano, JA; Zancheta, D, 2015
)
0.68
" In-silico ADME and toxicity risk assessment was done for pharmacokinetic and bioavailability compliance evaluation."( In-silico & In-vitro Identification of Structure-Activity Relationship Pattern of Serpentine & Gallic Acid Targeting PI3Kγ as Potential Anticancer Target.
Dubey, V; Kalani, K; Khan, F; Luqman, S; Sharma, P; Shukla, A; Srivastava, SK, 2017
)
0.46

Dosage Studied

Wortmannin inhibited FGF-mediated cell proliferation in a dose-response manner and had a maximum inhibition of 80% at 100 microM. The direct role of this p62(cplx)-associated PI3-kinase activity in TGN-derived vesicle formation is indicated by the finding.

ExcerptRelevanceReference
"The addition of insulin or insulin-like growth factor I (IGF-I) to RIE-1 cells increased the expression of the primary response gene cMG1; dose-response analysis suggested that this effect was mediated largely through type 1 IGF receptors."( Insulin and insulin-like growth factor I stimulate expression of the primary response gene cMG1/TIS11b by a wortmannin-sensitive pathway in RIE-1 cells.
Brown, KD; Corps, AN, 1995
)
0.5
" In agonist dose-response studies, WO caused a noncompetitive inhibition of both alpha 1R and alpha 2R responses, but was more potent against alpha 2R."( Effects of wortmannin on alpha-1/alpha-2 adrenergic receptor-mediated contractile responses in rabbit vascular tissues.
Deth, RC; Waen-Safranchik, VI, 1994
)
0.68
" Thioctic acid provoked an upward shift of the glucose-uptake insulin dose-response curve."( Stimulation of glucose uptake by the natural coenzyme alpha-lipoic acid/thioctic acid: participation of elements of the insulin signaling pathway.
Estrada, DE; Ewart, HS; Klip, A; Ramlal, T; Tritschler, H; Tsakiridis, T; Volchuk, A, 1996
)
0.29
" The direct role of this p62(cplx)-associated PI3-kinase activity in TGN-derived vesicle formation is indicated by the finding that both lipid kinase activity and the formation of pIgA-R-containing exocytic vesicles from the TGN are inhibited by wortmannin with similar dose-response curves and 50% inhibitory concentrations (3."( Phosphatidylinositol 3-kinase is required for the formation of constitutive transport vesicles from the TGN.
Howell, KE; Jones, SM, 1997
)
0.48
" Insulin and IGF dose-response experiments showed that up-regulation of IGFBP-5 resulted from IGFR-1 activation."( Up-regulation of insulin-like growth factor binding protein-5 is independent of muscle cell differentiation, sensitive to rapamycin, but insensitive to wortmannin and LY294002.
Dubois, C; Montarras, D; Pinset, C; Rousse, S, 1998
)
0.5
" Cell proliferation mediated by FGF-2 was blocked by metabolic inhibitors (genistein, LY294002 and wortmannin); genistein inhibited FGF-mediated cell proliferation in a dose-response manner and had a maximum inhibition of 80% at 100 microM, while inhibitors of phosphatidylinositol 3-kinase had less inhibitory effect than did genistein."( Fibroblast growth factor 2 uses PLC-gamma1 for cell proliferation and PI3-kinase for alteration of cell shape and cell proliferation in corneal endothelial cells.
Kay, EP; Ko, MK; Lee, SC; Park, SY, 1998
)
0.52
" The dose-response relationship required for the synergistic effect of GDNF and TGF-beta identifies 60 pg/ml of either factor combined with 2 ng/ml of the other factor as the EC50."( Glial cell line-derived neurotrophic factor requires transforming growth factor-beta for exerting its full neurotrophic potential on peripheral and CNS neurons.
Farkas, L; Galter, D; Henheik, P; Jaszai, J; Krieglstein, K; Krohn, K; Unsicker, K, 1998
)
0.3
" Moreover, the dose-response relationships for Raf-1 activation, MAP-kinase activation and mitogenesis show significantly higher sensitivity to Ang II than the InsP3, Ca2+-release and aldosterone secretory responses."( Signaling events activated by angiotensin II receptors: what goes before and after the calcium signals.
Balla, T; Smith, RD; Tian, Y; Varnai, P,
)
0.13
" Subsequent removal of wortmannin from the media shifted this dose-response curve to one resembling that for GLUT4 translocation and pp70 S6-kinase."( Identification of wortmannin-sensitive targets in 3T3-L1 adipocytes. DissociationoOf insulin-stimulated glucose uptake and glut4 translocation.
Birnbaum, MJ; Fingar, DC; Garza, LA; Hausdorff, SF; Morioka, K; Summers, SA; Whiteman, EL, 1999
)
0.95
" After 30 min incubation with gastrin, the secretion of chymotrypsinogen and amylase showed superimposable monophasic dose-response curves."( The CCKB/gastrin receptor is coupled to the regulation of enzyme secretion, protein synthesis and p70 S6 kinase activity in acinar cells from ElasCCKB transgenic mice.
Clemente, F; Clerc, P; Desbois, C; Dufresne, M; Estival, A; Fourmy, D; Guilloteau, P; Huërou-Luron, IL; Romé, V, 1999
)
0.3
" Identical dose-response curves are obtained for the Ca2+ release stimulated by cross-linking FcgammaRIIA, implicating these two enzymes in a common signaling pathway."( Convergence of Fc gamma receptor IIA and Fc gamma receptor IIIB signaling pathways in human neutrophils.
Chuang, FY; Sassaroli, M; Unkeless, JC, 2000
)
0.31
" The dose-response relationship for insulin yielded a maximal change (mean +/- SE) in membrane potential of -13."( Insulin activates ATP-sensitive K(+) channels in pancreatic beta-cells through a phosphatidylinositol 3-kinase-dependent pathway.
Goforth, PB; Khan, FA; Satin, LS; Zhang, M, 2001
)
0.31
" Inhibitory concentration (IC50) values for a number of compounds were calculated as means +/- SEM from dose-response determinations."( Second messengers in platelet aggregation evoked by serotonin and A23187, a calcium ionophore.
Cheema, M; Connor, JD; Gilani, AH; Rasheed, H; Rizvi, Z; Saeed, SA, 2001
)
0.31
" The antisecretory effect persisted for more than 24 hrs in the case of Wortmannin and 9 hr in the case of ME 3407 at a dosage 1 and 3 mg/pouch for 30 min, respectively."( [New target for the inhibitors of gastric acid secretion. Inhibition of myosin and actin activities via the apical membrane of parietal cells in dogs].
Fujishita, T; Jinbo, K; Okabe, S, 2003
)
0.55
" Because both DNA breaks and apoptosis are known to occur following irradiation, whole-body irradiation was administered to find out the temporal pattern and dose-response of PARP expression and the activity pattern of DNA-PK."( Poly (ADP-ribose) polymerase and DNA-dependent protein kinase: differential activation in vivo.
Krishna, M; Narang, H; Verma, NC, 2004
)
0.32
" FAK phosphorylation at Ser-910 could be distinguished from that at Tyr-397 in terms of dose-response relationships and kinetics."( PDGF and FGF induce focal adhesion kinase (FAK) phosphorylation at Ser-910: dissociation from Tyr-397 phosphorylation and requirement for ERK activation.
Fan, RS; Hunger-Glaser, I; Perez-Salazar, E; Rozengurt, E, 2004
)
0.32
" The dose-response curve for methoxamine was shifted to the right and the maximum contractile response was reduced in mesenteric arterial beds from beef tallow-fed rats, but the modulation of this response induced by L-arginine plus BSA was preserved."( Modulations of shear stress-induced contractile responses and agonist-induced vasodilation in hypercholesterolemic rats.
Kamata, K; Kobayashi, T; Matsumoto, T; Sato, A; Suenaga, H, 2004
)
0.32
" In dose-response studies carried out on six different cell lines and a primary cell culture, we analyzed the ability of the inhibitors to block phosphorylation of protein kinase B/akt (PKB/akt) at Ser473 as a measure of PtdIns3K activity, or the phosphorylation of Erk1/2 at activating Thr/Tyr sites as a measure of the extent of activation of MAPK/Erk kinase (MEK/Erk)."( Acute activation of Erk1/Erk2 and protein kinase B/akt proceed by independent pathways in multiple cell types.
Chiu, D; Duronio, V; Ma, K; Scott, A, 2005
)
0.33
" However, the dosage used in the above experiments did not affect beta cell viability and apoptosis."( Prostaglandin E2 regulates Foxo activity via the Akt pathway: implications for pancreatic islet beta cell dysfunction.
Chen, Q; Han, X; Ling, JJ; Lv, JH; Meng, ZX; Sun, JX; Sun, YJ; Zhu, DY, 2006
)
0.33
" Importantly, this was achieved when dosing well after myocardial reperfusion (up to 3 h after), the same time period when patients are most accessible for therapeutic intervention."( Phosphoinositide 3-kinase gamma/delta inhibition limits infarct size after myocardial ischemia/reperfusion injury.
Cheresh, D; Demaria, A; Dneprovskaia, E; Doukas, J; Fine, R; Hood, J; Noronha, G; Soll, R; Weis, S; Wrasidlo, W, 2006
)
0.33
" Dosing and time course experiments showed that 3-MA's ability to activate lipolysis was more sensitive than its inhibitory effect on autophagy."( The autophagic inhibitor 3-methyladenine potently stimulates PKA-dependent lipolysis in adipocytes.
Heckmann, BL; Liu, J; Yang, X; Zhang, X, 2013
)
0.39
" To clarify the role of androgens on TRAIL-induced apoptosis in prostate cancer cells, we investigated the effects of androgen on TRAIL-induced cell death in a dose-response manner."( Androgens regulate TRAIL-induced cell death in prostate cancer cells via multiple mechanisms.
Lu, J; Tindall, DJ; Wang, D, 2013
)
0.39
" The main aim of this study was to investigate the dose-response relationship and determine the lowest effective dose of EPO that reliably increases the osteogenic differentiation of human mesenchymal stromal cells (hMSCs)."( The osteogenic effect of erythropoietin on human mesenchymal stromal cells is dose-dependent and involves non-hematopoietic receptors and multiple intracellular signaling pathways.
Baatrup, A; Bünger, C; Jensen, J; Lysdahl, H; Rölfing, JH; Stiehler, M, 2014
)
0.4
" First, generate environmentally relevant dose-response models of short-term lead exposure in adult rats."( Adult lead exposure increases blood-retinal permeability: A risk factor for retinal vascular disease.
Chen, JY; Fox, DA; Huang, P; Lin, Y; Liu, XQ; Luo, WJ; Shen, XF; Wang, JY; Wang, W; Zhao, ZH, 2016
)
0.43
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Roles (7)

RoleDescription
EC 2.7.1.137 (phosphatidylinositol 3-kinase) inhibitorAn inhibitor of phosphatidylinositol 3-kinase, EC 2.7.1.137, a family of related enzymes capable of phosphorylating the 3 position hydroxy group of the inositol ring of a phosphatidylinositol.
anticoronaviral agentAny antiviral agent which inhibits the activity of coronaviruses.
geroprotectorAny compound that supports healthy aging, slows the biological aging process, or extends lifespan.
autophagy inhibitorAny compound that inhibits the process of autophagy (the self-digestion of one or more components of a cell through the action of enzymes originating within the same cell).
Penicillium metaboliteAny fungal metabolite produced during a metabolic reaction in Penicillium.
radiosensitizing agentA drug that makes increases the sensitivity of tumour cells to radiation therapy.
antineoplastic agentA substance that inhibits or prevents the proliferation of neoplasms.
[role information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Drug Classes (4)

ClassDescription
organic heteropentacyclic compound
delta-lactoneA lactone having a six-membered lactone ring.
acetate esterAny carboxylic ester where the carboxylic acid component is acetic acid.
cyclic ketone
[compound class information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Pathways (2)

PathwayProteinsCompounds
3-phosphoinositide biosynthesis2919
D-myo-inositol (1,4,5)-trisphosphate biosynthesis1621

Protein Targets (55)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Chain A, ATP-DEPENDENT DNA HELICASE Q1Homo sapiens (human)Potency35.48130.125919.1169125.8920AID2549
Nrf2Homo sapiens (human)Potency22.38720.09208.222223.1093AID624171
WRNHomo sapiens (human)Potency14.12540.168331.2583100.0000AID651768
phosphopantetheinyl transferaseBacillus subtilisPotency35.48130.141337.9142100.0000AID1490
GLS proteinHomo sapiens (human)Potency3.54810.35487.935539.8107AID624170
TDP1 proteinHomo sapiens (human)Potency1.37780.000811.382244.6684AID686978; AID686979
Microtubule-associated protein tauHomo sapiens (human)Potency19.62210.180013.557439.8107AID1460; AID1468
Smad3Homo sapiens (human)Potency10.00000.00527.809829.0929AID588855
aldehyde dehydrogenase 1 family, member A1Homo sapiens (human)Potency37.65050.011212.4002100.0000AID1030
regulator of G-protein signaling 4Homo sapiens (human)Potency17.78280.531815.435837.6858AID504845
67.9K proteinVaccinia virusPotency22.38720.00018.4406100.0000AID720580
IDH1Homo sapiens (human)Potency12.99530.005210.865235.4813AID686970
euchromatic histone-lysine N-methyltransferase 2Homo sapiens (human)Potency5.01190.035520.977089.1251AID504332
vitamin D3 receptor isoform VDRAHomo sapiens (human)Potency60.45660.354828.065989.1251AID504847
thyroid hormone receptor beta isoform aHomo sapiens (human)Potency40.07490.010039.53711,122.0200AID1469; AID1479
nuclear factor erythroid 2-related factor 2 isoform 2Homo sapiens (human)Potency3.66260.00419.984825.9290AID504444
parathyroid hormone/parathyroid hormone-related peptide receptor precursorHomo sapiens (human)Potency56.23413.548119.542744.6684AID743266
transcriptional regulator ERG isoform 3Homo sapiens (human)Potency22.38720.794321.275750.1187AID624246
importin subunit beta-1 isoform 1Homo sapiens (human)Potency28.18385.804836.130665.1308AID540253
snurportin-1Homo sapiens (human)Potency28.18385.804836.130665.1308AID540253
peptidyl-prolyl cis-trans isomerase NIMA-interacting 1Homo sapiens (human)Potency67.45550.425612.059128.1838AID504891
GTP-binding nuclear protein Ran isoform 1Homo sapiens (human)Potency28.18385.804816.996225.9290AID540253
DNA polymerase iota isoform a (long)Homo sapiens (human)Potency89.12510.050127.073689.1251AID588590
gemininHomo sapiens (human)Potency5.80480.004611.374133.4983AID624296
VprHuman immunodeficiency virus 1Potency17.78281.584919.626463.0957AID651644
DNA dC->dU-editing enzyme APOBEC-3G isoform 1Homo sapiens (human)Potency17.78280.058010.694926.6086AID602310
Alpha-synucleinHomo sapiens (human)Potency5.01190.56239.398525.1189AID652106
Guanine nucleotide-binding protein GHomo sapiens (human)Potency11.22021.995325.532750.1187AID624287
Inositol monophosphatase 1Rattus norvegicus (Norway rat)Potency28.18381.000010.475628.1838AID1457
TAR DNA-binding protein 43Homo sapiens (human)Potency1.00001.778316.208135.4813AID652104
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Inhibition Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)IC50 (µMol)21,000.03990.00010.33717.3000AID1798511; AID266957; AID549731; AID719910
Serine/threonine-protein kinase PLK4Homo sapiens (human)Ki6.82500.00030.95599.3000AID1798514
ATP-binding cassette sub-family C member 3Homo sapiens (human)IC50 (µMol)133.00000.63154.45319.3000AID1473740
Multidrug resistance-associated protein 4Homo sapiens (human)IC50 (µMol)63.20000.20005.677410.0000AID1473741
Bile salt export pumpHomo sapiens (human)IC50 (µMol)13.60000.11007.190310.0000AID1443980; AID1473738
Myosin light chain kinase, smooth muscleGallus gallus (chicken)IC50 (µMol)0.26000.00003.35339.8000AID512466
Metabotropic glutamate receptor 1Rattus norvegicus (Norway rat)IC50 (µMol)0.00850.00020.58878.9900AID549727; AID549731
Phosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)IC50 (µMol)16,333.54380.00000.683210.0000AID1702056; AID1797362; AID1798511; AID263886; AID694026; AID726172
Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)IC50 (µMol)8,647.23310.00000.734010.0000AID1471171; AID1702056; AID1797362; AID1798511; AID1799520; AID263886; AID266954; AID366246; AID428307; AID549470; AID549727; AID694026; AID719913; AID726172
Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)Ki0.12000.00000.25396.0000AID239093
Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)IC50 (µMol)21,000.04230.00020.595310.0000AID1798511; AID266956; AID549728; AID719912
Serine/threonine-protein kinase mTORHomo sapiens (human)IC50 (µMol)0.04000.00000.857510.0000AID254664
Phosphatidylinositol 4-kinase alphaHomo sapiens (human)IC50 (µMol)0.28000.28003.69007.1000AID1917568
Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)IC50 (µMol)14,705.53940.00030.660710.0000AID1185177; AID1798510; AID1798511; AID266953; AID305329; AID549729; AID719911
Serine/threonine-protein kinase PLK1Homo sapiens (human)IC50 (µMol)0.44330.00010.77349.0000AID360388; AID435578; AID719878
Serine/threonine-protein kinase PLK1Homo sapiens (human)Ki6.82500.00021.06089.3000AID1798514
DNA-dependent protein kinase catalytic subunitHomo sapiens (human)Ki0.12000.00073.04016.0000AID239094; AID705450
Myosin light chain kinase, smooth muscleHomo sapiens (human)IC50 (µMol)2.35670.02202.413310.0000AID205135; AID435214; AID550538
Phosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)IC50 (µMol)0.01900.01900.37101.7200AID1798510
Canalicular multispecific organic anion transporter 1Homo sapiens (human)IC50 (µMol)46.10002.41006.343310.0000AID1473739
Phosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)IC50 (µMol)30.00007.10007.10007.1000AID1917567
Serine/threonine-protein kinase PLK3Homo sapiens (human)IC50 (µMol)0.10570.00200.61037.2000AID360387; AID360389; AID360390
Serine/threonine-protein kinase PLK3Homo sapiens (human)Ki6.82500.00101.27269.3000AID1798514
Serine/threonine-protein kinase PLK2Homo sapiens (human)Ki6.82500.00101.27269.3000AID1798514
Phosphatidylinositol 4-kinase betaHomo sapiens (human)IC50 (µMol)0.44000.01832.45107.1000AID1917569
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Activation Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
endoribonuclease toxin MazFEscherichia coli str. K-12 substr. MG1655EC50 (µMol)99.00003.96009.515717.4000AID588481; AID588502
Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)Kd0.00550.00331.51757.6000AID1423296
Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)Kd0.00540.00060.84627.4000AID1423293
Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)Kd0.00760.00170.83166.7000AID1423294
Serine/threonine-protein kinase mTORHomo sapiens (human)Kd9.20000.00010.59939.2000AID1423298
Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)Kd0.01500.00261.46028.4000AID1423295
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Other Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
heat shock protein HSP 90-alpha isoform 2Homo sapiens (human)AC500.36300.19503.667918.6960AID540270
heat shock protein 90, putativePlasmodium falciparum 3D7AC500.21500.19504.992098.5000AID540268
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Biological Processes (469)

Processvia Protein(s)Taxonomy
phosphorylationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
natural killer cell differentiationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
positive regulation of cytokine productionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
positive regulation of endothelial cell proliferationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
adaptive immune responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
mast cell chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
respiratory burst involved in defense responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
protein phosphorylationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
inflammatory responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
immune responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
positive regulation of endothelial cell migrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
positive regulation of gene expressionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
T cell chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
natural killer cell activationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
B cell differentiationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
T cell differentiationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
positive regulation of cell migrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
neutrophil chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
positive regulation of neutrophil apoptotic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
natural killer cell chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
B cell chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
vascular endothelial growth factor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
T cell activationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
B cell activationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
mast cell degranulationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
innate immune responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
positive regulation of angiogenesisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
T cell receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
B cell receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
mast cell differentiationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
neutrophil extravasationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
positive regulation of epithelial tube formationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
cell migrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
phosphatidylinositol-3-phosphate biosynthetic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
phosphatidylinositol-mediated signalingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
positive regulation of centriole replicationSerine/threonine-protein kinase PLK4Homo sapiens (human)
protein phosphorylationSerine/threonine-protein kinase PLK4Homo sapiens (human)
centriole replicationSerine/threonine-protein kinase PLK4Homo sapiens (human)
positive regulation of centriole replicationSerine/threonine-protein kinase PLK4Homo sapiens (human)
cilium assemblySerine/threonine-protein kinase PLK4Homo sapiens (human)
trophoblast giant cell differentiationSerine/threonine-protein kinase PLK4Homo sapiens (human)
de novo centriole assembly involved in multi-ciliated epithelial cell differentiationSerine/threonine-protein kinase PLK4Homo sapiens (human)
xenobiotic metabolic processATP-binding cassette sub-family C member 3Homo sapiens (human)
xenobiotic transmembrane transportATP-binding cassette sub-family C member 3Homo sapiens (human)
bile acid and bile salt transportATP-binding cassette sub-family C member 3Homo sapiens (human)
glucuronoside transportATP-binding cassette sub-family C member 3Homo sapiens (human)
xenobiotic transportATP-binding cassette sub-family C member 3Homo sapiens (human)
transmembrane transportATP-binding cassette sub-family C member 3Homo sapiens (human)
leukotriene transportATP-binding cassette sub-family C member 3Homo sapiens (human)
monoatomic anion transmembrane transportATP-binding cassette sub-family C member 3Homo sapiens (human)
transport across blood-brain barrierATP-binding cassette sub-family C member 3Homo sapiens (human)
prostaglandin secretionMultidrug resistance-associated protein 4Homo sapiens (human)
cilium assemblyMultidrug resistance-associated protein 4Homo sapiens (human)
platelet degranulationMultidrug resistance-associated protein 4Homo sapiens (human)
xenobiotic metabolic processMultidrug resistance-associated protein 4Homo sapiens (human)
xenobiotic transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
bile acid and bile salt transportMultidrug resistance-associated protein 4Homo sapiens (human)
prostaglandin transportMultidrug resistance-associated protein 4Homo sapiens (human)
urate transportMultidrug resistance-associated protein 4Homo sapiens (human)
glutathione transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
cAMP transportMultidrug resistance-associated protein 4Homo sapiens (human)
leukotriene transportMultidrug resistance-associated protein 4Homo sapiens (human)
monoatomic anion transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
export across plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
transport across blood-brain barrierMultidrug resistance-associated protein 4Homo sapiens (human)
guanine nucleotide transmembrane transportMultidrug resistance-associated protein 4Homo sapiens (human)
fatty acid metabolic processBile salt export pumpHomo sapiens (human)
bile acid biosynthetic processBile salt export pumpHomo sapiens (human)
xenobiotic metabolic processBile salt export pumpHomo sapiens (human)
xenobiotic transmembrane transportBile salt export pumpHomo sapiens (human)
response to oxidative stressBile salt export pumpHomo sapiens (human)
bile acid metabolic processBile salt export pumpHomo sapiens (human)
response to organic cyclic compoundBile salt export pumpHomo sapiens (human)
bile acid and bile salt transportBile salt export pumpHomo sapiens (human)
canalicular bile acid transportBile salt export pumpHomo sapiens (human)
protein ubiquitinationBile salt export pumpHomo sapiens (human)
regulation of fatty acid beta-oxidationBile salt export pumpHomo sapiens (human)
carbohydrate transmembrane transportBile salt export pumpHomo sapiens (human)
bile acid signaling pathwayBile salt export pumpHomo sapiens (human)
cholesterol homeostasisBile salt export pumpHomo sapiens (human)
response to estrogenBile salt export pumpHomo sapiens (human)
response to ethanolBile salt export pumpHomo sapiens (human)
xenobiotic export from cellBile salt export pumpHomo sapiens (human)
lipid homeostasisBile salt export pumpHomo sapiens (human)
phospholipid homeostasisBile salt export pumpHomo sapiens (human)
positive regulation of bile acid secretionBile salt export pumpHomo sapiens (human)
regulation of bile acid metabolic processBile salt export pumpHomo sapiens (human)
transmembrane transportBile salt export pumpHomo sapiens (human)
muscle structure developmentMyosin light chain kinase, smooth muscleGallus gallus (chicken)
tonic smooth muscle contractionMyosin light chain kinase, smooth muscleGallus gallus (chicken)
intracellular glucose homeostasisPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
negative regulation of cell-matrix adhesionPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of leukocyte migrationPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
transcription by RNA polymerase IIPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
protein import into nucleusPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
immune responsePhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
extrinsic apoptotic signaling pathway via death domain receptorsPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
intrinsic apoptotic signaling pathway in response to DNA damagePhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of lamellipodium assemblyPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
cytokine-mediated signaling pathwayPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
B cell differentiationPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
T cell differentiationPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
osteoclast differentiationPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of tumor necrosis factor productionPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
cellular response to insulin stimulusPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of RNA splicingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
regulation of toll-like receptor 4 signaling pathwayPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
substrate adhesion-dependent cell spreadingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
cellular response to UVPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
response to endoplasmic reticulum stressPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
interleukin-18-mediated signaling pathwayPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
natural killer cell mediated cytotoxicityPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of protein import into nucleusPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
negative regulation of apoptotic processPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
negative regulation of osteoclast differentiationPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of transcription by RNA polymerase IIPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of glucose importPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
phosphatidylinositol phosphate biosynthetic processPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
insulin-like growth factor receptor signaling pathwayPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of smooth muscle cell proliferationPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
protein stabilizationPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of filopodium assemblyPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
negative regulation of stress fiber assemblyPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
growth hormone receptor signaling pathwayPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
myeloid leukocyte migrationPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of focal adhesion disassemblyPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of endoplasmic reticulum unfolded protein responsePhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
positive regulation of protein localization to plasma membranePhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
insulin receptor signaling pathwayPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
calcium ion homeostasisAlpha-synucleinHomo sapiens (human)
negative regulation of transcription by RNA polymerase IIAlpha-synucleinHomo sapiens (human)
microglial cell activationAlpha-synucleinHomo sapiens (human)
positive regulation of receptor recyclingAlpha-synucleinHomo sapiens (human)
positive regulation of neurotransmitter secretionAlpha-synucleinHomo sapiens (human)
negative regulation of protein kinase activityAlpha-synucleinHomo sapiens (human)
fatty acid metabolic processAlpha-synucleinHomo sapiens (human)
neutral lipid metabolic processAlpha-synucleinHomo sapiens (human)
phospholipid metabolic processAlpha-synucleinHomo sapiens (human)
activation of cysteine-type endopeptidase activity involved in apoptotic processAlpha-synucleinHomo sapiens (human)
mitochondrial membrane organizationAlpha-synucleinHomo sapiens (human)
adult locomotory behaviorAlpha-synucleinHomo sapiens (human)
response to xenobiotic stimulusAlpha-synucleinHomo sapiens (human)
response to iron(II) ionAlpha-synucleinHomo sapiens (human)
regulation of phospholipase activityAlpha-synucleinHomo sapiens (human)
negative regulation of platelet-derived growth factor receptor signaling pathwayAlpha-synucleinHomo sapiens (human)
regulation of glutamate secretionAlpha-synucleinHomo sapiens (human)
regulation of dopamine secretionAlpha-synucleinHomo sapiens (human)
synaptic vesicle exocytosisAlpha-synucleinHomo sapiens (human)
synaptic vesicle primingAlpha-synucleinHomo sapiens (human)
regulation of transmembrane transporter activityAlpha-synucleinHomo sapiens (human)
negative regulation of microtubule polymerizationAlpha-synucleinHomo sapiens (human)
receptor internalizationAlpha-synucleinHomo sapiens (human)
protein destabilizationAlpha-synucleinHomo sapiens (human)
response to magnesium ionAlpha-synucleinHomo sapiens (human)
negative regulation of transporter activityAlpha-synucleinHomo sapiens (human)
response to lipopolysaccharideAlpha-synucleinHomo sapiens (human)
negative regulation of monooxygenase activityAlpha-synucleinHomo sapiens (human)
positive regulation of peptidyl-serine phosphorylationAlpha-synucleinHomo sapiens (human)
response to type II interferonAlpha-synucleinHomo sapiens (human)
cellular response to oxidative stressAlpha-synucleinHomo sapiens (human)
SNARE complex assemblyAlpha-synucleinHomo sapiens (human)
positive regulation of SNARE complex assemblyAlpha-synucleinHomo sapiens (human)
regulation of locomotionAlpha-synucleinHomo sapiens (human)
dopamine biosynthetic processAlpha-synucleinHomo sapiens (human)
mitochondrial ATP synthesis coupled electron transportAlpha-synucleinHomo sapiens (human)
regulation of macrophage activationAlpha-synucleinHomo sapiens (human)
positive regulation of apoptotic processAlpha-synucleinHomo sapiens (human)
negative regulation of apoptotic processAlpha-synucleinHomo sapiens (human)
negative regulation of cysteine-type endopeptidase activity involved in apoptotic processAlpha-synucleinHomo sapiens (human)
negative regulation of neuron apoptotic processAlpha-synucleinHomo sapiens (human)
positive regulation of endocytosisAlpha-synucleinHomo sapiens (human)
negative regulation of exocytosisAlpha-synucleinHomo sapiens (human)
positive regulation of exocytosisAlpha-synucleinHomo sapiens (human)
regulation of long-term neuronal synaptic plasticityAlpha-synucleinHomo sapiens (human)
synaptic vesicle endocytosisAlpha-synucleinHomo sapiens (human)
synaptic vesicle transportAlpha-synucleinHomo sapiens (human)
positive regulation of inflammatory responseAlpha-synucleinHomo sapiens (human)
regulation of acyl-CoA biosynthetic processAlpha-synucleinHomo sapiens (human)
protein tetramerizationAlpha-synucleinHomo sapiens (human)
positive regulation of release of sequestered calcium ion into cytosolAlpha-synucleinHomo sapiens (human)
neuron apoptotic processAlpha-synucleinHomo sapiens (human)
dopamine uptake involved in synaptic transmissionAlpha-synucleinHomo sapiens (human)
negative regulation of dopamine uptake involved in synaptic transmissionAlpha-synucleinHomo sapiens (human)
negative regulation of serotonin uptakeAlpha-synucleinHomo sapiens (human)
regulation of norepinephrine uptakeAlpha-synucleinHomo sapiens (human)
negative regulation of norepinephrine uptakeAlpha-synucleinHomo sapiens (human)
excitatory postsynaptic potentialAlpha-synucleinHomo sapiens (human)
long-term synaptic potentiationAlpha-synucleinHomo sapiens (human)
positive regulation of inositol phosphate biosynthetic processAlpha-synucleinHomo sapiens (human)
negative regulation of thrombin-activated receptor signaling pathwayAlpha-synucleinHomo sapiens (human)
response to interleukin-1Alpha-synucleinHomo sapiens (human)
cellular response to copper ionAlpha-synucleinHomo sapiens (human)
cellular response to epinephrine stimulusAlpha-synucleinHomo sapiens (human)
positive regulation of protein serine/threonine kinase activityAlpha-synucleinHomo sapiens (human)
supramolecular fiber organizationAlpha-synucleinHomo sapiens (human)
negative regulation of mitochondrial electron transport, NADH to ubiquinoneAlpha-synucleinHomo sapiens (human)
positive regulation of glutathione peroxidase activityAlpha-synucleinHomo sapiens (human)
positive regulation of hydrogen peroxide catabolic processAlpha-synucleinHomo sapiens (human)
regulation of synaptic vesicle recyclingAlpha-synucleinHomo sapiens (human)
regulation of reactive oxygen species biosynthetic processAlpha-synucleinHomo sapiens (human)
positive regulation of protein localization to cell peripheryAlpha-synucleinHomo sapiens (human)
negative regulation of chaperone-mediated autophagyAlpha-synucleinHomo sapiens (human)
regulation of presynapse assemblyAlpha-synucleinHomo sapiens (human)
amyloid fibril formationAlpha-synucleinHomo sapiens (human)
synapse organizationAlpha-synucleinHomo sapiens (human)
chemical synaptic transmissionAlpha-synucleinHomo sapiens (human)
phosphorylationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
angiogenesisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
liver developmentPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
regulation of protein phosphorylationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
vasculature developmentPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
glucose metabolic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
phagocytosisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
epidermal growth factor receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
insulin receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
positive regulation of lamellipodium assemblyPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
negative regulation of gene expressionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
response to activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
response to muscle inactivityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
negative regulation of macroautophagyPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
actin cytoskeleton organizationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
platelet activationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
negative regulation of actin filament depolymerizationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
T cell costimulationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
positive regulation of TOR signalingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
cellular response to insulin stimulusPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
response to muscle stretchPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
vascular endothelial growth factor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
regulation of multicellular organism growthPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
response to L-leucinePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
anoikisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
regulation of cellular respirationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
negative regulation of neuron apoptotic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
endothelial cell migrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
phosphatidylinositol phosphate biosynthetic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
insulin-like growth factor receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
positive regulation of smooth muscle cell proliferationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
T cell receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
positive regulation of phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
relaxation of cardiac musclePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
cardiac muscle contractionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
adipose tissue developmentPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
cellular response to glucose stimulusPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
cellular response to hydrostatic pressurePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
response to dexamethasonePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
cardiac muscle cell contractionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
energy homeostasisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
regulation of actin filament organizationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
autosome genomic imprintingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
response to butyratePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
positive regulation of protein localization to membranePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
negative regulation of fibroblast apoptotic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
negative regulation of anoikisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
phosphatidylinositol-3-phosphate biosynthetic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
phosphatidylinositol-mediated signalingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
cell migrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
regulation of cell-matrix adhesionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
positive regulation of gene expressionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
phosphorylationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
positive regulation of nitric oxide biosynthetic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
endothelial cell proliferationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
response to ischemiaPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
sphingosine-1-phosphate receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
intracellular calcium ion homeostasisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
endocytosisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
autophagyPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
homophilic cell adhesion via plasma membrane adhesion moleculesPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
cell surface receptor protein tyrosine kinase signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
G protein-coupled receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
positive regulation of autophagyPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
positive regulation of endothelial cell migrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
cell migrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
platelet activationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
positive regulation of neutrophil apoptotic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
positive regulation of Rac protein signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
embryonic cleavagePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
negative regulation of MAPK cascadePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
phosphatidylinositol phosphate biosynthetic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
negative regulation of phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
angiogenesis involved in wound healingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
platelet aggregationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
negative regulation of vascular endothelial growth factor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
negative regulation of hypoxia-induced intrinsic apoptotic signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
negative regulation of sprouting angiogenesisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
regulation of clathrin-dependent endocytosisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
phosphatidylinositol-3-phosphate biosynthetic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
phosphatidylinositol-mediated signalingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
protein destabilizationSerine/threonine-protein kinase mTORHomo sapiens (human)
protein phosphorylationSerine/threonine-protein kinase mTORHomo sapiens (human)
negative regulation of macroautophagySerine/threonine-protein kinase mTORHomo sapiens (human)
phosphorylationSerine/threonine-protein kinase mTORHomo sapiens (human)
protein autophosphorylationSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of cell growthSerine/threonine-protein kinase mTORHomo sapiens (human)
T-helper 1 cell lineage commitmentSerine/threonine-protein kinase mTORHomo sapiens (human)
heart morphogenesisSerine/threonine-protein kinase mTORHomo sapiens (human)
heart valve morphogenesisSerine/threonine-protein kinase mTORHomo sapiens (human)
energy reserve metabolic processSerine/threonine-protein kinase mTORHomo sapiens (human)
'de novo' pyrimidine nucleobase biosynthetic processSerine/threonine-protein kinase mTORHomo sapiens (human)
protein phosphorylationSerine/threonine-protein kinase mTORHomo sapiens (human)
inflammatory responseSerine/threonine-protein kinase mTORHomo sapiens (human)
DNA damage responseSerine/threonine-protein kinase mTORHomo sapiens (human)
cytoskeleton organizationSerine/threonine-protein kinase mTORHomo sapiens (human)
lysosome organizationSerine/threonine-protein kinase mTORHomo sapiens (human)
germ cell developmentSerine/threonine-protein kinase mTORHomo sapiens (human)
response to nutrientSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of cell sizeSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to starvationSerine/threonine-protein kinase mTORHomo sapiens (human)
response to heatSerine/threonine-protein kinase mTORHomo sapiens (human)
post-embryonic developmentSerine/threonine-protein kinase mTORHomo sapiens (human)
negative regulation of autophagySerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of lamellipodium assemblySerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of gene expressionSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of epithelial to mesenchymal transitionSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of myotube differentiationSerine/threonine-protein kinase mTORHomo sapiens (human)
macroautophagySerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of macroautophagySerine/threonine-protein kinase mTORHomo sapiens (human)
phosphorylationSerine/threonine-protein kinase mTORHomo sapiens (human)
peptidyl-serine phosphorylationSerine/threonine-protein kinase mTORHomo sapiens (human)
neuronal action potentialSerine/threonine-protein kinase mTORHomo sapiens (human)
protein catabolic processSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of cell growthSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of actin filament polymerizationSerine/threonine-protein kinase mTORHomo sapiens (human)
T cell costimulationSerine/threonine-protein kinase mTORHomo sapiens (human)
ruffle organizationSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of myelinationSerine/threonine-protein kinase mTORHomo sapiens (human)
response to nutrient levelsSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to nutrient levelsSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to nutrientSerine/threonine-protein kinase mTORHomo sapiens (human)
TOR signalingSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of phosphoprotein phosphatase activitySerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to insulin stimulusSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of actin cytoskeleton organizationSerine/threonine-protein kinase mTORHomo sapiens (human)
calcineurin-NFAT signaling cascadeSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to amino acid starvationSerine/threonine-protein kinase mTORHomo sapiens (human)
multicellular organism growthSerine/threonine-protein kinase mTORHomo sapiens (human)
TORC1 signalingSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of circadian rhythmSerine/threonine-protein kinase mTORHomo sapiens (human)
negative regulation of apoptotic processSerine/threonine-protein kinase mTORHomo sapiens (human)
response to amino acidSerine/threonine-protein kinase mTORHomo sapiens (human)
anoikisSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of osteoclast differentiationSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of translationSerine/threonine-protein kinase mTORHomo sapiens (human)
negative regulation of cell sizeSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of glycolytic processSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of transcription by RNA polymerase IIISerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of translational initiationSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of lipid biosynthetic processSerine/threonine-protein kinase mTORHomo sapiens (human)
behavioral response to painSerine/threonine-protein kinase mTORHomo sapiens (human)
rhythmic processSerine/threonine-protein kinase mTORHomo sapiens (human)
oligodendrocyte differentiationSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of oligodendrocyte differentiationSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of peptidyl-tyrosine phosphorylationSerine/threonine-protein kinase mTORHomo sapiens (human)
voluntary musculoskeletal movementSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of stress fiber assemblySerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of keratinocyte migrationSerine/threonine-protein kinase mTORHomo sapiens (human)
nucleus localizationSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of phosphatidylinositol 3-kinase/protein kinase B signal transductionSerine/threonine-protein kinase mTORHomo sapiens (human)
cardiac muscle cell developmentSerine/threonine-protein kinase mTORHomo sapiens (human)
cardiac muscle contractionSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to methionineSerine/threonine-protein kinase mTORHomo sapiens (human)
negative regulation of calcineurin-NFAT signaling cascadeSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to amino acid stimulusSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to L-leucineSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to hypoxiaSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to osmotic stressSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of membrane permeabilitySerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of cellular response to heatSerine/threonine-protein kinase mTORHomo sapiens (human)
negative regulation of protein localization to nucleusSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of signal transduction by p53 class mediatorSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of transcription of nucleolar large rRNA by RNA polymerase ISerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of wound healing, spreading of epidermal cellsSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of locomotor rhythmSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of cytoplasmic translational initiationSerine/threonine-protein kinase mTORHomo sapiens (human)
negative regulation of lysosome organizationSerine/threonine-protein kinase mTORHomo sapiens (human)
positive regulation of pentose-phosphate shuntSerine/threonine-protein kinase mTORHomo sapiens (human)
cellular response to leucine starvationSerine/threonine-protein kinase mTORHomo sapiens (human)
regulation of autophagosome assemblySerine/threonine-protein kinase mTORHomo sapiens (human)
negative regulation of macroautophagySerine/threonine-protein kinase mTORHomo sapiens (human)
phosphorylationPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
phosphatidylinositol biosynthetic processPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
signal transductionPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
modulation by host of viral processPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
phosphatidylinositol phosphate biosynthetic processPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
reorganization of cellular membranes to establish viral sites of replicationPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
phosphatidylinositol-mediated signalingPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
phosphorylationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
angiogenesisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
positive regulation of cytokine productionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
adaptive immune responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
dendritic cell chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
positive regulation of acute inflammatory responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
respiratory burst involved in defense responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
sphingosine-1-phosphate receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
endocytosisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
inflammatory responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
immune responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
G protein-coupled receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
phospholipase C-activating G protein-coupled receptor signaling pathwayPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
positive regulation of cytosolic calcium ion concentrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
positive regulation of endothelial cell migrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
T cell chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
negative regulation of triglyceride catabolic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
neutrophil chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
secretory granule localizationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
regulation of cell adhesion mediated by integrinPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
positive regulation of Rac protein signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
natural killer cell chemotaxisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
T cell proliferationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
T cell activationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
mast cell degranulationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
positive regulation of MAP kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
innate immune responsePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
regulation of angiogenesisPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
phosphatidylinositol phosphate biosynthetic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
positive regulation of phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
negative regulation of cardiac muscle contractionPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
platelet aggregationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
cellular response to cAMPPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
neutrophil extravasationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
hepatocyte apoptotic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
regulation of calcium ion transmembrane transportPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
negative regulation of fibroblast apoptotic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
cell migrationPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
phosphatidylinositol-mediated signalingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
phosphatidylinositol-3-phosphate biosynthetic processPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
establishment of protein localizationSerine/threonine-protein kinase PLK1Homo sapiens (human)
mitotic sister chromatid segregationSerine/threonine-protein kinase PLK1Homo sapiens (human)
G2/M transition of mitotic cell cycleSerine/threonine-protein kinase PLK1Homo sapiens (human)
negative regulation of transcription by RNA polymerase IISerine/threonine-protein kinase PLK1Homo sapiens (human)
establishment of mitotic spindle orientationSerine/threonine-protein kinase PLK1Homo sapiens (human)
mitotic cell cycleSerine/threonine-protein kinase PLK1Homo sapiens (human)
mitotic cytokinesisSerine/threonine-protein kinase PLK1Homo sapiens (human)
microtubule bundle formationSerine/threonine-protein kinase PLK1Homo sapiens (human)
double-strand break repairSerine/threonine-protein kinase PLK1Homo sapiens (human)
protein phosphorylationSerine/threonine-protein kinase PLK1Homo sapiens (human)
mitotic spindle organizationSerine/threonine-protein kinase PLK1Homo sapiens (human)
sister chromatid cohesionSerine/threonine-protein kinase PLK1Homo sapiens (human)
mitotic chromosome condensationSerine/threonine-protein kinase PLK1Homo sapiens (human)
mitotic nuclear membrane disassemblySerine/threonine-protein kinase PLK1Homo sapiens (human)
metaphase/anaphase transition of mitotic cell cycleSerine/threonine-protein kinase PLK1Homo sapiens (human)
mitotic spindle assembly checkpoint signalingSerine/threonine-protein kinase PLK1Homo sapiens (human)
mitotic G2 DNA damage checkpoint signalingSerine/threonine-protein kinase PLK1Homo sapiens (human)
centrosome cycleSerine/threonine-protein kinase PLK1Homo sapiens (human)
regulation of mitotic cell cycleSerine/threonine-protein kinase PLK1Homo sapiens (human)
positive regulation of peptidyl-threonine phosphorylationSerine/threonine-protein kinase PLK1Homo sapiens (human)
female meiosis chromosome segregationSerine/threonine-protein kinase PLK1Homo sapiens (human)
protein ubiquitinationSerine/threonine-protein kinase PLK1Homo sapiens (human)
peptidyl-serine phosphorylationSerine/threonine-protein kinase PLK1Homo sapiens (human)
regulation of mitotic metaphase/anaphase transitionSerine/threonine-protein kinase PLK1Homo sapiens (human)
protein destabilizationSerine/threonine-protein kinase PLK1Homo sapiens (human)
positive regulation of proteasomal ubiquitin-dependent protein catabolic processSerine/threonine-protein kinase PLK1Homo sapiens (human)
regulation of cytokinesisSerine/threonine-protein kinase PLK1Homo sapiens (human)
negative regulation of apoptotic processSerine/threonine-protein kinase PLK1Homo sapiens (human)
regulation of protein bindingSerine/threonine-protein kinase PLK1Homo sapiens (human)
homologous chromosome segregationSerine/threonine-protein kinase PLK1Homo sapiens (human)
negative regulation of cyclin-dependent protein serine/threonine kinase activitySerine/threonine-protein kinase PLK1Homo sapiens (human)
positive regulation of proteolysisSerine/threonine-protein kinase PLK1Homo sapiens (human)
Golgi inheritanceSerine/threonine-protein kinase PLK1Homo sapiens (human)
nuclear membrane disassemblySerine/threonine-protein kinase PLK1Homo sapiens (human)
positive regulation of ubiquitin-protein transferase activitySerine/threonine-protein kinase PLK1Homo sapiens (human)
regulation of cell cycleSerine/threonine-protein kinase PLK1Homo sapiens (human)
synaptonemal complex disassemblySerine/threonine-protein kinase PLK1Homo sapiens (human)
protein localization to chromatinSerine/threonine-protein kinase PLK1Homo sapiens (human)
protein localization to nuclear envelopeSerine/threonine-protein kinase PLK1Homo sapiens (human)
double-strand break repair via alternative nonhomologous end joiningSerine/threonine-protein kinase PLK1Homo sapiens (human)
positive regulation of protein localization to nucleusSerine/threonine-protein kinase PLK1Homo sapiens (human)
regulation of mitotic spindle assemblySerine/threonine-protein kinase PLK1Homo sapiens (human)
regulation of mitotic cell cycle phase transitionSerine/threonine-protein kinase PLK1Homo sapiens (human)
positive regulation of ubiquitin protein ligase activitySerine/threonine-protein kinase PLK1Homo sapiens (human)
regulation of protein localization to cell cortexSerine/threonine-protein kinase PLK1Homo sapiens (human)
regulation of anaphase-promoting complex-dependent catabolic processSerine/threonine-protein kinase PLK1Homo sapiens (human)
negative regulation of double-strand break repair via homologous recombinationSerine/threonine-protein kinase PLK1Homo sapiens (human)
negative regulation of inflammatory response to antigenic stimulusGuanine nucleotide-binding protein GHomo sapiens (human)
renal water homeostasisGuanine nucleotide-binding protein GHomo sapiens (human)
G protein-coupled receptor signaling pathwayGuanine nucleotide-binding protein GHomo sapiens (human)
regulation of insulin secretionGuanine nucleotide-binding protein GHomo sapiens (human)
cellular response to glucagon stimulusGuanine nucleotide-binding protein GHomo sapiens (human)
peptidyl-serine phosphorylationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
maturation of 5.8S rRNADNA-dependent protein kinase catalytic subunitHomo sapiens (human)
somitogenesisDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
negative regulation of protein phosphorylationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
activation of innate immune responseDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
B cell lineage commitmentDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
immature B cell differentiationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
pro-B cell differentiationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
T cell lineage commitmentDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
double-strand break repairDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
double-strand break repair via nonhomologous end joiningDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
chromatin remodelingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein phosphorylationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
DNA damage responseDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
brain developmentDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
heart developmentDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
response to gamma radiationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
telomere cappingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
peptidyl-serine phosphorylationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
peptidyl-threonine phosphorylationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
mitotic G1 DNA damage checkpoint signalingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein destabilizationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
cellular response to insulin stimulusDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
T cell differentiation in thymusDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
T cell receptor V(D)J recombinationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
small-subunit processome assemblyDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
ectopic germ cell programmed cell deathDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein modification processDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
regulation of circadian rhythmDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
positive regulation of apoptotic processDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
negative regulation of apoptotic processDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
innate immune responseDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
positive regulation of lymphocyte differentiationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
positive regulation of erythrocyte differentiationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
positive regulation of translationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
positive regulation of transcription by RNA polymerase IIDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
rhythmic processDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
regulation of smooth muscle cell proliferationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
regulation of epithelial cell proliferationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
double-strand break repair via alternative nonhomologous end joiningDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
negative regulation of cGAS/STING signaling pathwayDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
regulation of hematopoietic stem cell differentiationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
positive regulation of platelet formationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
positive regulation of double-strand break repair via nonhomologous end joiningDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
immunoglobulin V(D)J recombinationDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
telomere maintenanceDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
intrinsic apoptotic signaling pathway in response to DNA damageDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
negative regulation of protein phosphorylationTAR DNA-binding protein 43Homo sapiens (human)
mRNA processingTAR DNA-binding protein 43Homo sapiens (human)
RNA splicingTAR DNA-binding protein 43Homo sapiens (human)
negative regulation of gene expressionTAR DNA-binding protein 43Homo sapiens (human)
regulation of protein stabilityTAR DNA-binding protein 43Homo sapiens (human)
positive regulation of insulin secretionTAR DNA-binding protein 43Homo sapiens (human)
response to endoplasmic reticulum stressTAR DNA-binding protein 43Homo sapiens (human)
positive regulation of protein import into nucleusTAR DNA-binding protein 43Homo sapiens (human)
regulation of circadian rhythmTAR DNA-binding protein 43Homo sapiens (human)
regulation of apoptotic processTAR DNA-binding protein 43Homo sapiens (human)
negative regulation by host of viral transcriptionTAR DNA-binding protein 43Homo sapiens (human)
rhythmic processTAR DNA-binding protein 43Homo sapiens (human)
regulation of cell cycleTAR DNA-binding protein 43Homo sapiens (human)
3'-UTR-mediated mRNA destabilizationTAR DNA-binding protein 43Homo sapiens (human)
3'-UTR-mediated mRNA stabilizationTAR DNA-binding protein 43Homo sapiens (human)
nuclear inner membrane organizationTAR DNA-binding protein 43Homo sapiens (human)
amyloid fibril formationTAR DNA-binding protein 43Homo sapiens (human)
regulation of gene expressionTAR DNA-binding protein 43Homo sapiens (human)
protein phosphorylationMyosin light chain kinase, smooth muscleHomo sapiens (human)
smooth muscle contractionMyosin light chain kinase, smooth muscleHomo sapiens (human)
tonic smooth muscle contractionMyosin light chain kinase, smooth muscleHomo sapiens (human)
positive regulation of cell migrationMyosin light chain kinase, smooth muscleHomo sapiens (human)
bleb assemblyMyosin light chain kinase, smooth muscleHomo sapiens (human)
positive regulation of calcium ion transportMyosin light chain kinase, smooth muscleHomo sapiens (human)
aorta smooth muscle tissue morphogenesisMyosin light chain kinase, smooth muscleHomo sapiens (human)
cellular hypotonic responseMyosin light chain kinase, smooth muscleHomo sapiens (human)
positive regulation of wound healingMyosin light chain kinase, smooth muscleHomo sapiens (human)
immune responsePhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
G protein-coupled receptor signaling pathwayPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
positive regulation of MAP kinase activityPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
phosphatidylinositol metabolic processPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
positive regulation of phosphatidylinositol 3-kinase/protein kinase B signal transductionPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
xenobiotic metabolic processCanalicular multispecific organic anion transporter 1Homo sapiens (human)
xenobiotic transmembrane transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
negative regulation of gene expressionCanalicular multispecific organic anion transporter 1Homo sapiens (human)
bile acid and bile salt transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
bilirubin transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
heme catabolic processCanalicular multispecific organic anion transporter 1Homo sapiens (human)
xenobiotic export from cellCanalicular multispecific organic anion transporter 1Homo sapiens (human)
transmembrane transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
transepithelial transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
leukotriene transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
monoatomic anion transmembrane transportCanalicular multispecific organic anion transporter 1Homo sapiens (human)
transport across blood-brain barrierCanalicular multispecific organic anion transporter 1Homo sapiens (human)
xenobiotic transport across blood-brain barrierCanalicular multispecific organic anion transporter 1Homo sapiens (human)
phosphatidylinositol biosynthetic processPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
phosphatidylinositol phosphate biosynthetic processPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
endosome organizationPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
Golgi organizationPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
G1/S transition of mitotic cell cycleSerine/threonine-protein kinase PLK3Homo sapiens (human)
G2/M transition of mitotic cell cycleSerine/threonine-protein kinase PLK3Homo sapiens (human)
negative regulation of transcription by RNA polymerase IISerine/threonine-protein kinase PLK3Homo sapiens (human)
response to reactive oxygen speciesSerine/threonine-protein kinase PLK3Homo sapiens (human)
protein phosphorylationSerine/threonine-protein kinase PLK3Homo sapiens (human)
apoptotic processSerine/threonine-protein kinase PLK3Homo sapiens (human)
response to osmotic stressSerine/threonine-protein kinase PLK3Homo sapiens (human)
DNA damage responseSerine/threonine-protein kinase PLK3Homo sapiens (human)
DNA damage response, signal transduction by p53 class mediator resulting in cell cycle arrestSerine/threonine-protein kinase PLK3Homo sapiens (human)
endomitotic cell cycleSerine/threonine-protein kinase PLK3Homo sapiens (human)
response to radiationSerine/threonine-protein kinase PLK3Homo sapiens (human)
cytoplasmic microtubule organizationSerine/threonine-protein kinase PLK3Homo sapiens (human)
regulation of cytokinesisSerine/threonine-protein kinase PLK3Homo sapiens (human)
negative regulation of apoptotic processSerine/threonine-protein kinase PLK3Homo sapiens (human)
mitotic G1/S transition checkpoint signalingSerine/threonine-protein kinase PLK3Homo sapiens (human)
regulation of cell divisionSerine/threonine-protein kinase PLK3Homo sapiens (human)
negative regulation of phosphatidylinositol 3-kinase/protein kinase B signal transductionSerine/threonine-protein kinase PLK3Homo sapiens (human)
Golgi disassemblySerine/threonine-protein kinase PLK3Homo sapiens (human)
positive regulation of intracellular protein transportSerine/threonine-protein kinase PLK3Homo sapiens (human)
regulation of signal transduction by p53 class mediatorSerine/threonine-protein kinase PLK3Homo sapiens (human)
positive regulation of chaperone-mediated autophagySerine/threonine-protein kinase PLK3Homo sapiens (human)
positive regulation of proteasomal ubiquitin-dependent protein catabolic process involved in cellular response to hypoxiaSerine/threonine-protein kinase PLK3Homo sapiens (human)
mitotic spindle organizationSerine/threonine-protein kinase PLK3Homo sapiens (human)
G1/S transition of mitotic cell cycleSerine/threonine-protein kinase PLK2Homo sapiens (human)
negative regulation of inflammatory response to antigenic stimulusSerine/threonine-protein kinase PLK2Homo sapiens (human)
protein phosphorylationSerine/threonine-protein kinase PLK2Homo sapiens (human)
DNA damage response, signal transduction by p53 class mediator resulting in cell cycle arrestSerine/threonine-protein kinase PLK2Homo sapiens (human)
mitotic spindle organizationSerine/threonine-protein kinase PLK2Homo sapiens (human)
Ras protein signal transductionSerine/threonine-protein kinase PLK2Homo sapiens (human)
memorySerine/threonine-protein kinase PLK2Homo sapiens (human)
positive regulation of autophagySerine/threonine-protein kinase PLK2Homo sapiens (human)
negative regulation of angiogenesisSerine/threonine-protein kinase PLK2Homo sapiens (human)
peptidyl-serine phosphorylationSerine/threonine-protein kinase PLK2Homo sapiens (human)
Rap protein signal transductionSerine/threonine-protein kinase PLK2Homo sapiens (human)
negative regulation of apoptotic processSerine/threonine-protein kinase PLK2Homo sapiens (human)
positive regulation of canonical NF-kappaB signal transductionSerine/threonine-protein kinase PLK2Homo sapiens (human)
positive regulation of protein catabolic processSerine/threonine-protein kinase PLK2Homo sapiens (human)
regulation of centriole replicationSerine/threonine-protein kinase PLK2Homo sapiens (human)
regulation of synaptic plasticitySerine/threonine-protein kinase PLK2Homo sapiens (human)
long-term synaptic potentiationSerine/threonine-protein kinase PLK2Homo sapiens (human)
long-term synaptic depressionSerine/threonine-protein kinase PLK2Homo sapiens (human)
negative regulation of apoptotic process in bone marrow cellSerine/threonine-protein kinase PLK2Homo sapiens (human)
positive regulation of cell migration involved in sprouting angiogenesisSerine/threonine-protein kinase PLK2Homo sapiens (human)
negative regulation of cellular senescenceSerine/threonine-protein kinase PLK2Homo sapiens (human)
lysosome organizationPhosphatidylinositol 4-kinase betaHomo sapiens (human)
phosphatidylinositol biosynthetic processPhosphatidylinositol 4-kinase betaHomo sapiens (human)
receptor-mediated endocytosisPhosphatidylinositol 4-kinase betaHomo sapiens (human)
signal transductionPhosphatidylinositol 4-kinase betaHomo sapiens (human)
inner ear developmentPhosphatidylinositol 4-kinase betaHomo sapiens (human)
phosphatidylinositol phosphate biosynthetic processPhosphatidylinositol 4-kinase betaHomo sapiens (human)
phosphatidylinositol-mediated signalingPhosphatidylinositol 4-kinase betaHomo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Molecular Functions (109)

Processvia Protein(s)Taxonomy
protein bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
ATP bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
1-phosphatidylinositol-3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
1-phosphatidylinositol-4,5-bisphosphate 3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
1-phosphatidylinositol-4-phosphate 3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
protein serine/threonine kinase activitySerine/threonine-protein kinase PLK4Homo sapiens (human)
protein bindingSerine/threonine-protein kinase PLK4Homo sapiens (human)
ATP bindingSerine/threonine-protein kinase PLK4Homo sapiens (human)
identical protein bindingSerine/threonine-protein kinase PLK4Homo sapiens (human)
protein serine kinase activitySerine/threonine-protein kinase PLK4Homo sapiens (human)
ATP bindingATP-binding cassette sub-family C member 3Homo sapiens (human)
ABC-type xenobiotic transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
glucuronoside transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ABC-type glutathione S-conjugate transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ABC-type bile acid transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ATP hydrolysis activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ATPase-coupled transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
xenobiotic transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ATPase-coupled inorganic anion transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
icosanoid transmembrane transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
ABC-type transporter activityATP-binding cassette sub-family C member 3Homo sapiens (human)
guanine nucleotide transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
protein bindingMultidrug resistance-associated protein 4Homo sapiens (human)
ATP bindingMultidrug resistance-associated protein 4Homo sapiens (human)
ABC-type xenobiotic transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
prostaglandin transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
urate transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
purine nucleotide transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ABC-type glutathione S-conjugate transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ABC-type bile acid transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
efflux transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
15-hydroxyprostaglandin dehydrogenase (NAD+) activityMultidrug resistance-associated protein 4Homo sapiens (human)
ATP hydrolysis activityMultidrug resistance-associated protein 4Homo sapiens (human)
glutathione transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ATPase-coupled transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
xenobiotic transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ATPase-coupled inorganic anion transmembrane transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
ABC-type transporter activityMultidrug resistance-associated protein 4Homo sapiens (human)
protein bindingBile salt export pumpHomo sapiens (human)
ATP bindingBile salt export pumpHomo sapiens (human)
ABC-type xenobiotic transporter activityBile salt export pumpHomo sapiens (human)
bile acid transmembrane transporter activityBile salt export pumpHomo sapiens (human)
canalicular bile acid transmembrane transporter activityBile salt export pumpHomo sapiens (human)
carbohydrate transmembrane transporter activityBile salt export pumpHomo sapiens (human)
ABC-type bile acid transporter activityBile salt export pumpHomo sapiens (human)
ATP hydrolysis activityBile salt export pumpHomo sapiens (human)
calmodulin bindingMyosin light chain kinase, smooth muscleGallus gallus (chicken)
ATP bindingMyosin light chain kinase, smooth muscleGallus gallus (chicken)
metal ion bindingMyosin light chain kinase, smooth muscleGallus gallus (chicken)
myosin light chain kinase activityMyosin light chain kinase, smooth muscleGallus gallus (chicken)
phosphotyrosine residue bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
transmembrane receptor protein tyrosine kinase adaptor activityPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
insulin receptor bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
insulin-like growth factor receptor bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
neurotrophin TRKA receptor bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
protein bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
kinase activator activityPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
protein phosphatase bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
phosphatidylinositol 3-kinase regulator activityPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
phosphatidylinositol 3-kinase regulatory subunit bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
ErbB-3 class receptor bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
phosphatidylinositol 3-kinase bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
insulin bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
insulin receptor substrate bindingPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
protein heterodimerization activityPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
phosphatidylinositol kinase activityPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
enzyme-substrate adaptor activityPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
phosphatidylinositol 3-kinase activator activityPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
1-phosphatidylinositol-3-kinase regulator activityPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
fatty acid bindingAlpha-synucleinHomo sapiens (human)
phospholipase D inhibitor activityAlpha-synucleinHomo sapiens (human)
SNARE bindingAlpha-synucleinHomo sapiens (human)
magnesium ion bindingAlpha-synucleinHomo sapiens (human)
transcription cis-regulatory region bindingAlpha-synucleinHomo sapiens (human)
actin bindingAlpha-synucleinHomo sapiens (human)
protein kinase inhibitor activityAlpha-synucleinHomo sapiens (human)
copper ion bindingAlpha-synucleinHomo sapiens (human)
calcium ion bindingAlpha-synucleinHomo sapiens (human)
protein bindingAlpha-synucleinHomo sapiens (human)
phospholipid bindingAlpha-synucleinHomo sapiens (human)
ferrous iron bindingAlpha-synucleinHomo sapiens (human)
zinc ion bindingAlpha-synucleinHomo sapiens (human)
lipid bindingAlpha-synucleinHomo sapiens (human)
oxidoreductase activityAlpha-synucleinHomo sapiens (human)
kinesin bindingAlpha-synucleinHomo sapiens (human)
Hsp70 protein bindingAlpha-synucleinHomo sapiens (human)
histone bindingAlpha-synucleinHomo sapiens (human)
identical protein bindingAlpha-synucleinHomo sapiens (human)
alpha-tubulin bindingAlpha-synucleinHomo sapiens (human)
cysteine-type endopeptidase inhibitor activity involved in apoptotic processAlpha-synucleinHomo sapiens (human)
tau protein bindingAlpha-synucleinHomo sapiens (human)
phosphoprotein bindingAlpha-synucleinHomo sapiens (human)
molecular adaptor activityAlpha-synucleinHomo sapiens (human)
dynein complex bindingAlpha-synucleinHomo sapiens (human)
cuprous ion bindingAlpha-synucleinHomo sapiens (human)
protein serine/threonine kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
protein bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
ATP bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
1-phosphatidylinositol-3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
protein kinase activator activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
insulin receptor substrate bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
1-phosphatidylinositol-4,5-bisphosphate 3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
protein serine kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
1-phosphatidylinositol-4-phosphate 3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
protein bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
ATP bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
1-phosphatidylinositol-3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
insulin receptor substrate bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
1-phosphatidylinositol-4,5-bisphosphate 3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
protein serine kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
1-phosphatidylinositol-4-phosphate 3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
RNA polymerase III type 1 promoter sequence-specific DNA bindingSerine/threonine-protein kinase mTORHomo sapiens (human)
RNA polymerase III type 2 promoter sequence-specific DNA bindingSerine/threonine-protein kinase mTORHomo sapiens (human)
RNA polymerase III type 3 promoter sequence-specific DNA bindingSerine/threonine-protein kinase mTORHomo sapiens (human)
TFIIIC-class transcription factor complex bindingSerine/threonine-protein kinase mTORHomo sapiens (human)
protein kinase activitySerine/threonine-protein kinase mTORHomo sapiens (human)
protein serine/threonine kinase activitySerine/threonine-protein kinase mTORHomo sapiens (human)
protein bindingSerine/threonine-protein kinase mTORHomo sapiens (human)
ATP bindingSerine/threonine-protein kinase mTORHomo sapiens (human)
kinase activitySerine/threonine-protein kinase mTORHomo sapiens (human)
identical protein bindingSerine/threonine-protein kinase mTORHomo sapiens (human)
ribosome bindingSerine/threonine-protein kinase mTORHomo sapiens (human)
phosphoprotein bindingSerine/threonine-protein kinase mTORHomo sapiens (human)
protein serine kinase activitySerine/threonine-protein kinase mTORHomo sapiens (human)
1-phosphatidylinositol 4-kinase activityPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
protein bindingPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
ATP bindingPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
kinase activityPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
cadherin bindingPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
protein kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
protein serine/threonine kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
protein bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
ATP bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
1-phosphatidylinositol-3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
1-phosphatidylinositol-4-phosphate 3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
identical protein bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
ephrin receptor bindingPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
1-phosphatidylinositol-4,5-bisphosphate 3-kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
protein serine kinase activityPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
magnesium ion bindingSerine/threonine-protein kinase PLK1Homo sapiens (human)
protein kinase activitySerine/threonine-protein kinase PLK1Homo sapiens (human)
protein serine/threonine kinase activitySerine/threonine-protein kinase PLK1Homo sapiens (human)
protein bindingSerine/threonine-protein kinase PLK1Homo sapiens (human)
ATP bindingSerine/threonine-protein kinase PLK1Homo sapiens (human)
microtubule bindingSerine/threonine-protein kinase PLK1Homo sapiens (human)
anaphase-promoting complex bindingSerine/threonine-protein kinase PLK1Homo sapiens (human)
protein kinase bindingSerine/threonine-protein kinase PLK1Homo sapiens (human)
identical protein bindingSerine/threonine-protein kinase PLK1Homo sapiens (human)
protein serine kinase activitySerine/threonine-protein kinase PLK1Homo sapiens (human)
G protein activityGuanine nucleotide-binding protein GHomo sapiens (human)
adenylate cyclase activator activityGuanine nucleotide-binding protein GHomo sapiens (human)
double-stranded DNA bindingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
RNA bindingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein kinase activityDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein serine/threonine kinase activityDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
DNA-dependent protein kinase activityDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein bindingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
ATP bindingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
enzyme bindingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein domain specific bindingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
U3 snoRNA bindingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
histone H2AXS139 kinase activityDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
RNA polymerase II-specific DNA-binding transcription factor bindingDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein serine kinase activityDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
RNA polymerase II cis-regulatory region sequence-specific DNA bindingTAR DNA-binding protein 43Homo sapiens (human)
DNA bindingTAR DNA-binding protein 43Homo sapiens (human)
double-stranded DNA bindingTAR DNA-binding protein 43Homo sapiens (human)
RNA bindingTAR DNA-binding protein 43Homo sapiens (human)
mRNA 3'-UTR bindingTAR DNA-binding protein 43Homo sapiens (human)
protein bindingTAR DNA-binding protein 43Homo sapiens (human)
lipid bindingTAR DNA-binding protein 43Homo sapiens (human)
identical protein bindingTAR DNA-binding protein 43Homo sapiens (human)
pre-mRNA intronic bindingTAR DNA-binding protein 43Homo sapiens (human)
molecular condensate scaffold activityTAR DNA-binding protein 43Homo sapiens (human)
actin bindingMyosin light chain kinase, smooth muscleHomo sapiens (human)
myosin light chain kinase activityMyosin light chain kinase, smooth muscleHomo sapiens (human)
protein bindingMyosin light chain kinase, smooth muscleHomo sapiens (human)
calmodulin bindingMyosin light chain kinase, smooth muscleHomo sapiens (human)
ATP bindingMyosin light chain kinase, smooth muscleHomo sapiens (human)
metal ion bindingMyosin light chain kinase, smooth muscleHomo sapiens (human)
G-protein beta/gamma-subunit complex bindingPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
1-phosphatidylinositol-3-kinase regulator activityPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
protein bindingCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ATP bindingCanalicular multispecific organic anion transporter 1Homo sapiens (human)
organic anion transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ABC-type xenobiotic transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
bilirubin transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ABC-type glutathione S-conjugate transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ATP hydrolysis activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ATPase-coupled transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
xenobiotic transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ATPase-coupled inorganic anion transmembrane transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
ABC-type transporter activityCanalicular multispecific organic anion transporter 1Homo sapiens (human)
magnesium ion bindingPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
1-phosphatidylinositol 4-kinase activityPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
protein bindingPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
ATP bindingPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
AP-3 adaptor complex bindingPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
p53 bindingSerine/threonine-protein kinase PLK3Homo sapiens (human)
protein serine/threonine kinase activitySerine/threonine-protein kinase PLK3Homo sapiens (human)
protein bindingSerine/threonine-protein kinase PLK3Homo sapiens (human)
ATP bindingSerine/threonine-protein kinase PLK3Homo sapiens (human)
protein serine kinase activitySerine/threonine-protein kinase PLK3Homo sapiens (human)
protein serine/threonine kinase activitySerine/threonine-protein kinase PLK2Homo sapiens (human)
protein bindingSerine/threonine-protein kinase PLK2Homo sapiens (human)
ATP bindingSerine/threonine-protein kinase PLK2Homo sapiens (human)
ATP-dependent protein bindingSerine/threonine-protein kinase PLK2Homo sapiens (human)
protein serine kinase activitySerine/threonine-protein kinase PLK2Homo sapiens (human)
1-phosphatidylinositol 4-kinase activityPhosphatidylinositol 4-kinase betaHomo sapiens (human)
protein bindingPhosphatidylinositol 4-kinase betaHomo sapiens (human)
ATP bindingPhosphatidylinositol 4-kinase betaHomo sapiens (human)
14-3-3 protein bindingPhosphatidylinositol 4-kinase betaHomo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Ceullar Components (102)

Processvia Protein(s)Taxonomy
cytosolPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
plasma membranePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
phosphatidylinositol 3-kinase complex, class IAPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
phosphatidylinositol 3-kinase complexPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
cytoplasmPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
plasma membranePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit delta isoformHomo sapiens (human)
XY bodySerine/threonine-protein kinase PLK4Homo sapiens (human)
nucleolusSerine/threonine-protein kinase PLK4Homo sapiens (human)
centrosomeSerine/threonine-protein kinase PLK4Homo sapiens (human)
centrioleSerine/threonine-protein kinase PLK4Homo sapiens (human)
cytosolSerine/threonine-protein kinase PLK4Homo sapiens (human)
cleavage furrowSerine/threonine-protein kinase PLK4Homo sapiens (human)
deuterosomeSerine/threonine-protein kinase PLK4Homo sapiens (human)
procentrioleSerine/threonine-protein kinase PLK4Homo sapiens (human)
procentriole replication complexSerine/threonine-protein kinase PLK4Homo sapiens (human)
nucleusSerine/threonine-protein kinase PLK4Homo sapiens (human)
plasma membraneATP-binding cassette sub-family C member 3Homo sapiens (human)
basal plasma membraneATP-binding cassette sub-family C member 3Homo sapiens (human)
basolateral plasma membraneATP-binding cassette sub-family C member 3Homo sapiens (human)
membraneATP-binding cassette sub-family C member 3Homo sapiens (human)
nucleolusMultidrug resistance-associated protein 4Homo sapiens (human)
Golgi apparatusMultidrug resistance-associated protein 4Homo sapiens (human)
plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
membraneMultidrug resistance-associated protein 4Homo sapiens (human)
basolateral plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
apical plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
platelet dense granule membraneMultidrug resistance-associated protein 4Homo sapiens (human)
external side of apical plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
plasma membraneMultidrug resistance-associated protein 4Homo sapiens (human)
basolateral plasma membraneBile salt export pumpHomo sapiens (human)
Golgi membraneBile salt export pumpHomo sapiens (human)
endosomeBile salt export pumpHomo sapiens (human)
plasma membraneBile salt export pumpHomo sapiens (human)
cell surfaceBile salt export pumpHomo sapiens (human)
apical plasma membraneBile salt export pumpHomo sapiens (human)
intercellular canaliculusBile salt export pumpHomo sapiens (human)
intracellular canaliculusBile salt export pumpHomo sapiens (human)
recycling endosomeBile salt export pumpHomo sapiens (human)
recycling endosome membraneBile salt export pumpHomo sapiens (human)
extracellular exosomeBile salt export pumpHomo sapiens (human)
membraneBile salt export pumpHomo sapiens (human)
cytosolMyosin light chain kinase, smooth muscleGallus gallus (chicken)
stress fiberMyosin light chain kinase, smooth muscleGallus gallus (chicken)
cleavage furrowMyosin light chain kinase, smooth muscleGallus gallus (chicken)
lamellipodiumMyosin light chain kinase, smooth muscleGallus gallus (chicken)
cytoplasmMyosin light chain kinase, smooth muscleGallus gallus (chicken)
plasma membraneMetabotropic glutamate receptor 1Rattus norvegicus (Norway rat)
nucleusPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
cytoplasmPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
cis-Golgi networkPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
cytosolPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
plasma membranePhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
cell-cell junctionPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
phosphatidylinositol 3-kinase complex, class IAPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
membranePhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
perinuclear region of cytoplasmPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
perinuclear endoplasmic reticulum membranePhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
phosphatidylinositol 3-kinase complexPhosphatidylinositol 3-kinase regulatory subunit alphaHomo sapiens (human)
platelet alpha granule membraneAlpha-synucleinHomo sapiens (human)
extracellular regionAlpha-synucleinHomo sapiens (human)
extracellular spaceAlpha-synucleinHomo sapiens (human)
nucleusAlpha-synucleinHomo sapiens (human)
cytoplasmAlpha-synucleinHomo sapiens (human)
mitochondrionAlpha-synucleinHomo sapiens (human)
lysosomeAlpha-synucleinHomo sapiens (human)
cytosolAlpha-synucleinHomo sapiens (human)
plasma membraneAlpha-synucleinHomo sapiens (human)
cell cortexAlpha-synucleinHomo sapiens (human)
actin cytoskeletonAlpha-synucleinHomo sapiens (human)
membraneAlpha-synucleinHomo sapiens (human)
inclusion bodyAlpha-synucleinHomo sapiens (human)
axonAlpha-synucleinHomo sapiens (human)
growth coneAlpha-synucleinHomo sapiens (human)
synaptic vesicle membraneAlpha-synucleinHomo sapiens (human)
perinuclear region of cytoplasmAlpha-synucleinHomo sapiens (human)
postsynapseAlpha-synucleinHomo sapiens (human)
supramolecular fiberAlpha-synucleinHomo sapiens (human)
protein-containing complexAlpha-synucleinHomo sapiens (human)
cytoplasmAlpha-synucleinHomo sapiens (human)
axon terminusAlpha-synucleinHomo sapiens (human)
neuronal cell bodyAlpha-synucleinHomo sapiens (human)
cytosolPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
phosphatidylinositol 3-kinase complex, class IAPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
intercalated discPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
lamellipodiumPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
perinuclear region of cytoplasmPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
phosphatidylinositol 3-kinase complexPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
phosphatidylinositol 3-kinase complex, class IBPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
plasma membranePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
cytoplasmPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha isoformHomo sapiens (human)
nucleusPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
nucleoplasmPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
nucleolusPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
cytosolPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
phosphatidylinositol 3-kinase complex, class IAPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
midbodyPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
intracellular membrane-bounded organellePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
plasma membranePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
cytoplasmPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
phosphatidylinositol 3-kinase complexPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit beta isoformHomo sapiens (human)
PML bodySerine/threonine-protein kinase mTORHomo sapiens (human)
lysosomal membraneSerine/threonine-protein kinase mTORHomo sapiens (human)
cytosolSerine/threonine-protein kinase mTORHomo sapiens (human)
Golgi membraneSerine/threonine-protein kinase mTORHomo sapiens (human)
nucleoplasmSerine/threonine-protein kinase mTORHomo sapiens (human)
cytoplasmSerine/threonine-protein kinase mTORHomo sapiens (human)
mitochondrial outer membraneSerine/threonine-protein kinase mTORHomo sapiens (human)
lysosomeSerine/threonine-protein kinase mTORHomo sapiens (human)
lysosomal membraneSerine/threonine-protein kinase mTORHomo sapiens (human)
endoplasmic reticulum membraneSerine/threonine-protein kinase mTORHomo sapiens (human)
cytosolSerine/threonine-protein kinase mTORHomo sapiens (human)
endomembrane systemSerine/threonine-protein kinase mTORHomo sapiens (human)
membraneSerine/threonine-protein kinase mTORHomo sapiens (human)
dendriteSerine/threonine-protein kinase mTORHomo sapiens (human)
TORC1 complexSerine/threonine-protein kinase mTORHomo sapiens (human)
TORC2 complexSerine/threonine-protein kinase mTORHomo sapiens (human)
phagocytic vesicleSerine/threonine-protein kinase mTORHomo sapiens (human)
nuclear envelopeSerine/threonine-protein kinase mTORHomo sapiens (human)
nucleusSerine/threonine-protein kinase mTORHomo sapiens (human)
cytoplasmSerine/threonine-protein kinase mTORHomo sapiens (human)
cytoplasmPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
cytosolPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
plasma membranePhosphatidylinositol 4-kinase alphaHomo sapiens (human)
focal adhesionPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
membranePhosphatidylinositol 4-kinase alphaHomo sapiens (human)
Golgi-associated vesicle membranePhosphatidylinositol 4-kinase alphaHomo sapiens (human)
extracellular exosomePhosphatidylinositol 4-kinase alphaHomo sapiens (human)
plasma membranePhosphatidylinositol 4-kinase alphaHomo sapiens (human)
cytoplasmPhosphatidylinositol 4-kinase alphaHomo sapiens (human)
cytoplasmPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
cytosolPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
plasma membranePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
phosphatidylinositol 3-kinase complex, class IAPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
membranePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
phosphatidylinositol 3-kinase complex, class IBPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
plasma membranePhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
cytoplasmPhosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform Homo sapiens (human)
spindle microtubuleSerine/threonine-protein kinase PLK1Homo sapiens (human)
kinetochoreSerine/threonine-protein kinase PLK1Homo sapiens (human)
synaptonemal complexSerine/threonine-protein kinase PLK1Homo sapiens (human)
spindle poleSerine/threonine-protein kinase PLK1Homo sapiens (human)
nucleusSerine/threonine-protein kinase PLK1Homo sapiens (human)
nucleoplasmSerine/threonine-protein kinase PLK1Homo sapiens (human)
centrosomeSerine/threonine-protein kinase PLK1Homo sapiens (human)
centrioleSerine/threonine-protein kinase PLK1Homo sapiens (human)
spindleSerine/threonine-protein kinase PLK1Homo sapiens (human)
cytosolSerine/threonine-protein kinase PLK1Homo sapiens (human)
microtubule cytoskeletonSerine/threonine-protein kinase PLK1Homo sapiens (human)
midbodySerine/threonine-protein kinase PLK1Homo sapiens (human)
centriolar satelliteSerine/threonine-protein kinase PLK1Homo sapiens (human)
spindle midzoneSerine/threonine-protein kinase PLK1Homo sapiens (human)
mitotic spindle poleSerine/threonine-protein kinase PLK1Homo sapiens (human)
chromatinSerine/threonine-protein kinase PLK1Homo sapiens (human)
outer kinetochoreSerine/threonine-protein kinase PLK1Homo sapiens (human)
nucleusSerine/threonine-protein kinase PLK1Homo sapiens (human)
centrosomeSerine/threonine-protein kinase PLK1Homo sapiens (human)
cytoplasmSerine/threonine-protein kinase PLK1Homo sapiens (human)
spindle poleSerine/threonine-protein kinase PLK1Homo sapiens (human)
kinetochoreSerine/threonine-protein kinase PLK1Homo sapiens (human)
plasma membraneGuanine nucleotide-binding protein GHomo sapiens (human)
chromosome, telomeric regionDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
nucleusDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
nucleoplasmDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
nucleolusDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
cytosolDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
membraneDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
DNA-dependent protein kinase complexDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
chromatinDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
transcription regulator complexDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
DNA-dependent protein kinase-DNA ligase 4 complexDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
small-subunit processomeDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein-containing complexDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
protein-DNA complexDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
nonhomologous end joining complexDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
nucleusDNA-dependent protein kinase catalytic subunitHomo sapiens (human)
intracellular non-membrane-bounded organelleTAR DNA-binding protein 43Homo sapiens (human)
nucleusTAR DNA-binding protein 43Homo sapiens (human)
nucleoplasmTAR DNA-binding protein 43Homo sapiens (human)
perichromatin fibrilsTAR DNA-binding protein 43Homo sapiens (human)
mitochondrionTAR DNA-binding protein 43Homo sapiens (human)
cytoplasmic stress granuleTAR DNA-binding protein 43Homo sapiens (human)
nuclear speckTAR DNA-binding protein 43Homo sapiens (human)
interchromatin granuleTAR DNA-binding protein 43Homo sapiens (human)
nucleoplasmTAR DNA-binding protein 43Homo sapiens (human)
chromatinTAR DNA-binding protein 43Homo sapiens (human)
stress fiberMyosin light chain kinase, smooth muscleHomo sapiens (human)
cytoplasmMyosin light chain kinase, smooth muscleHomo sapiens (human)
cytosolMyosin light chain kinase, smooth muscleHomo sapiens (human)
plasma membraneMyosin light chain kinase, smooth muscleHomo sapiens (human)
actin cytoskeletonMyosin light chain kinase, smooth muscleHomo sapiens (human)
lamellipodiumMyosin light chain kinase, smooth muscleHomo sapiens (human)
cleavage furrowMyosin light chain kinase, smooth muscleHomo sapiens (human)
cleavage furrowMyosin light chain kinase, smooth muscleHomo sapiens (human)
stress fiberMyosin light chain kinase, smooth muscleHomo sapiens (human)
lamellipodiumMyosin light chain kinase, smooth muscleHomo sapiens (human)
cytoplasmMyosin light chain kinase, smooth muscleHomo sapiens (human)
nucleusPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
cytoplasmPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
cytosolPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
plasma membranePhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
phosphatidylinositol 3-kinase complex, class IAPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
membranePhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
centriolar satellitePhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
phosphatidylinositol 3-kinase complex, class IBPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
phosphatidylinositol 3-kinase complexPhosphoinositide 3-kinase regulatory subunit 5Homo sapiens (human)
plasma membraneCanalicular multispecific organic anion transporter 1Homo sapiens (human)
cell surfaceCanalicular multispecific organic anion transporter 1Homo sapiens (human)
apical plasma membraneCanalicular multispecific organic anion transporter 1Homo sapiens (human)
intercellular canaliculusCanalicular multispecific organic anion transporter 1Homo sapiens (human)
apical plasma membraneCanalicular multispecific organic anion transporter 1Homo sapiens (human)
BLOC-1 complexPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
Golgi membranePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
mitochondrionPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
lysosomal membranePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
endosomePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
cytosolPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
plasma membranePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
membranePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
dendritePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
cytoplasmic vesiclePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
early endosome membranePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
growing cell tipPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
presynaptic membranePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
neuron projectionPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
neuronal cell bodyPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
perikaryonPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
membrane raftPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
trans-Golgi networkPhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
plasma membranePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
endosomePhosphatidylinositol 4-kinase type 2-alphaHomo sapiens (human)
nucleusSerine/threonine-protein kinase PLK3Homo sapiens (human)
nucleoplasmSerine/threonine-protein kinase PLK3Homo sapiens (human)
nucleolusSerine/threonine-protein kinase PLK3Homo sapiens (human)
cytoplasmSerine/threonine-protein kinase PLK3Homo sapiens (human)
Golgi stackSerine/threonine-protein kinase PLK3Homo sapiens (human)
centrosomeSerine/threonine-protein kinase PLK3Homo sapiens (human)
dendriteSerine/threonine-protein kinase PLK3Homo sapiens (human)
neuronal cell bodySerine/threonine-protein kinase PLK3Homo sapiens (human)
kinetochoreSerine/threonine-protein kinase PLK3Homo sapiens (human)
centrosomeSerine/threonine-protein kinase PLK3Homo sapiens (human)
nucleusSerine/threonine-protein kinase PLK3Homo sapiens (human)
spindle poleSerine/threonine-protein kinase PLK3Homo sapiens (human)
cytoplasmSerine/threonine-protein kinase PLK3Homo sapiens (human)
cytoplasmSerine/threonine-protein kinase PLK2Homo sapiens (human)
centrosomeSerine/threonine-protein kinase PLK2Homo sapiens (human)
centrioleSerine/threonine-protein kinase PLK2Homo sapiens (human)
cytosolSerine/threonine-protein kinase PLK2Homo sapiens (human)
dendriteSerine/threonine-protein kinase PLK2Homo sapiens (human)
chromatinSerine/threonine-protein kinase PLK2Homo sapiens (human)
spindle poleSerine/threonine-protein kinase PLK2Homo sapiens (human)
centrioleSerine/threonine-protein kinase PLK2Homo sapiens (human)
centrosomeSerine/threonine-protein kinase PLK2Homo sapiens (human)
cytoplasmSerine/threonine-protein kinase PLK2Homo sapiens (human)
kinetochoreSerine/threonine-protein kinase PLK2Homo sapiens (human)
nucleusSerine/threonine-protein kinase PLK2Homo sapiens (human)
Golgi membranePhosphatidylinositol 4-kinase betaHomo sapiens (human)
mitochondrial outer membranePhosphatidylinositol 4-kinase betaHomo sapiens (human)
endosomePhosphatidylinositol 4-kinase betaHomo sapiens (human)
Golgi apparatusPhosphatidylinositol 4-kinase betaHomo sapiens (human)
cytosolPhosphatidylinositol 4-kinase betaHomo sapiens (human)
rough endoplasmic reticulum membranePhosphatidylinositol 4-kinase betaHomo sapiens (human)
perinuclear region of cytoplasmPhosphatidylinositol 4-kinase betaHomo sapiens (human)
membranePhosphatidylinositol 4-kinase betaHomo sapiens (human)
cytoplasmPhosphatidylinositol 4-kinase betaHomo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (266)

Assay IDTitleYearJournalArticle
AID1346204Human DNA-dependent protein kinase catalytic subunit (Other PIKK family kinases)2012Bioorganic & medicinal chemistry letters, Sep-01, Volume: 22, Issue:17
Modulation of DNA repair by pharmacological inhibitors of the PIKK protein kinase family.
AID1345750Human phosphatidylinositol 4-kinase beta (Phosphatidylinositol kinases)1999Biochimica et biophysica acta, Mar-25, Volume: 1437, Issue:3
Functional expression and characterisation of a new human phosphatidylinositol 4-kinase PI4K230.
AID1345750Human phosphatidylinositol 4-kinase beta (Phosphatidylinositol kinases)1997The Journal of biological chemistry, Feb-14, Volume: 272, Issue:7
Cloning and characterization of a wortmannin-sensitive human phosphatidylinositol 4-kinase.
AID1345747Human phosphatidylinositol 4-kinase alpha (Phosphatidylinositol kinases)1997The Journal of biological chemistry, Feb-14, Volume: 272, Issue:7
Cloning and characterization of a wortmannin-sensitive human phosphatidylinositol 4-kinase.
AID1345749Human phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit alpha (Phosphatidylinositol kinases)2005Journal of medicinal chemistry, Jan-27, Volume: 48, Issue:2
Selective benzopyranone and pyrimido[2,1-a]isoquinolin-4-one inhibitors of DNA-dependent protein kinase: synthesis, structure-activity studies, and radiosensitization of a human tumor cell line in vitro.
AID1345747Human phosphatidylinositol 4-kinase alpha (Phosphatidylinositol kinases)1999Biochimica et biophysica acta, Mar-25, Volume: 1437, Issue:3
Functional expression and characterisation of a new human phosphatidylinositol 4-kinase PI4K230.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID1745845Primary qHTS for Inhibitors of ATXN expression
AID651635Viability Counterscreen for Primary qHTS for Inhibitors of ATXN expression
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID435621Percentage p38alpha MAPK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435315Percentage MARK3 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435339Percentage CaMKKbeta activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID521220Inhibition of neurosphere proliferation of mouse neural precursor cells by MTT assay2007Nature chemical biology, May, Volume: 3, Issue:5
Chemical genetics reveals a complex functional ground state of neural stem cells.
AID1917567Inhibition of PI4K2A catalytic domain (unknown origin) assessed as enzyme residual activity incubated for 60 mins using ATP as substrate by ATP-Glo luminescent assay2022Bioorganic & medicinal chemistry letters, 11-15, Volume: 76Structure-based design and modular synthesis of novel PI4K class II inhibitors bearing a 4-aminoquinazoline scaffold.
AID435681Percentage MAPKAPK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1661984Inhibition of cell proliferation of human PC3 cells over-expressing AKR1C3 at 1 uM incubated for 72 hrs by alamar blue assay2020Journal of medicinal chemistry, 09-24, Volume: 63, Issue:18
Development of Novel AKR1C3 Inhibitors as New Potential Treatment for Castration-Resistant Prostate Cancer.
AID435373Percentage PKCzeta activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID512449Inhibition of His-tagged bovine PI3K expressed in Sf9 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID134874In vivo inhibition of tumor growth in M-5076 ovarian model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID221647In vivo inhibition of tumor growth in LX-1 lung model was evaluated at dose 0.38 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID726614Antiviral activity against wild type Measles virus mWTFb infected in simian B95a cells assessed as virus-induced cytopathogenicity incubated for 30 mins prior to inoculation measured after 3 days by phase contrast microscopy2013Journal of medicinal chemistry, Feb-14, Volume: 56, Issue:3
Novel antiviral activity of l-dideoxy bicyclic nucleoside analogues versus vaccinia and measles viruses in vitro.
AID266956Inhibition of human PI3Kbeta2006Journal of medicinal chemistry, Jun-29, Volume: 49, Issue:13
Furan-2-ylmethylene thiazolidinediones as novel, potent, and selective inhibitors of phosphoinositide 3-kinase gamma.
AID512326Inhibition of His-tagged human SAPK2a/p38 expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID134868In vivo inhibition of tumor growth in C3H Mammary model was evaluated at dose 2.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID503305Antiproliferative activity against human PC3 cells at 500 nM after 120 hrs by MTT assay relative to DMSO2006Nature chemical biology, Jun, Volume: 2, Issue:6
Identifying off-target effects and hidden phenotypes of drugs in human cells.
AID435819Percentage PKBbeta activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID512325Inhibition of His-tagged human JNK1a1/SAPK1c expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID1503212Cytotoxicity against HEK293 cells assessed as cell blebbing at 200 nM2017Journal of natural products, 10-27, Volume: 80, Issue:10
Scalaradial Is a Potent Inhibitor of Transient Receptor Potential Melastatin 2 (TRPM2) Ion Channels.
AID1702057Antiproliferative activity against human MV4-11 cells assessed as reduction in cell viability incubated for 72 hrs by sulforhodamine B assay/CellTiter-Glo luminescent assay2018Journal of medicinal chemistry, 02-22, Volume: 61, Issue:4
Design, Synthesis, and Preclinical Evaluation of Fused Pyrimidine-Based Hydroxamates for the Treatment of Hepatocellular Carcinoma.
AID1331678Cell cycle arrest in human MCF7 cells assessed as M1 quadrant cells at 100 nM measured after 48 hrs by propidium iodide staining-based flow cytometry (Rvb = 98.1%)2016European journal of medicinal chemistry, Nov-10, Volume: 123Chalcogen containing heterocyclic scaffolds: New hybrids with antitumoral activity.
AID435225Percentage DYRK3 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1471171Inhibition of PI3K p110alpha (unknown origin) using PIP2 as substrate preincubated for 10 mins followed by substrate addition measured after 1 hr2017Bioorganic & medicinal chemistry letters, 06-01, Volume: 27, Issue:11
Iodine catalyzed three component synthesis of 1-((2-hydroxy naphthalen-1-yl)(phenyl)(methyl))pyrrolidin-2-one derivatives: Rationale as potent PI3K inhibitors and anticancer agents.
AID221636In vivo inhibition of tumor growth IGROV1 ovarian model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID719878Inhibition of GST-tagged Plk1 using recombinant protein X as a substrate containing threonine residues2012Journal of medicinal chemistry, Jul-26, Volume: 55, Issue:14
Irreversible protein kinase inhibitors: balancing the benefits and risks.
AID435238Percentage JNK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID512340Inhibition of His-tagged human GSK3b expressed in Sf21 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID549729Inhibition of human PI3K p110gamma catalytic subunit by AlphaScreen assay2011Bioorganic & medicinal chemistry letters, Jan-15, Volume: 21, Issue:2
Discovery of novel class 1 phosphatidylinositide 3-kinases (PI3K) fragment inhibitors through structure-based virtual screening.
AID436076Percentage DYRK1A activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID368327Cytotoxicity against human A549 cells after 24 hrs by YO-PRO-1 assay2009Bioorganic & medicinal chemistry, Feb-01, Volume: 17, Issue:3
Isolation, structure elucidation and cytotoxic evaluation of endiandrin B from the Australian rainforest plant Endiandra anthropophagorum.
AID1471174Inhibition of PI3K p110alpha (unknown origin) assessed as residual activity using PIP2 as substrate preincubated for 10 mins followed by substrate addition measured after 1 hr relative to control2017Bioorganic & medicinal chemistry letters, 06-01, Volume: 27, Issue:11
Iodine catalyzed three component synthesis of 1-((2-hydroxy naphthalen-1-yl)(phenyl)(methyl))pyrrolidin-2-one derivatives: Rationale as potent PI3K inhibitors and anticancer agents.
AID360390Inhibition of Plk3 in human A549 cells assessed as casein substrate phosphorylation by Western blot2007The Journal of biological chemistry, Jan-26, Volume: 282, Issue:4
Polo-like kinases inhibited by wortmannin. Labeling site and downstream effects.
AID512342Inhibition of rat liver AMPK at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID266957Inhibition of human PI3Kdelta2006Journal of medicinal chemistry, Jun-29, Volume: 49, Issue:13
Furan-2-ylmethylene thiazolidinediones as novel, potent, and selective inhibitors of phosphoinositide 3-kinase gamma.
AID435370Percentage p38beta MAPK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID134858In vivo inhibition of tumor growth in 6C3HED lymphosarcomal was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID435731Percentage MNK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1702059Antiproliferative activity against human MCF7 cells assessed as reduction in cell viability incubated for 72 hrs by sulforhodamine B assay/CellTiter-Glo luminescent assay2018Journal of medicinal chemistry, 02-22, Volume: 61, Issue:4
Design, Synthesis, and Preclinical Evaluation of Fused Pyrimidine-Based Hydroxamates for the Treatment of Hepatocellular Carcinoma.
AID1185176Inhibition of PI3Kgamma (unknown origin) assessed as decrease in fluorescence intensity using phosphorylated substrate at 10 uM2014European journal of medicinal chemistry, Sep-12, Volume: 84Discovery of nanomolar phosphoinositide 3-kinase gamma (PI3Kγ) inhibitors using ligand-based modeling and virtual screening followed by in vitro analysis.
AID435256Percentage p38-gamma MAPK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1331679Cell cycle arrest in human MCF7 cells assessed as sub-diploid cells at 100 nM measured after 48 hrs by propidium iodide staining-based flow cytometry (Rvb = 1.9%)2016European journal of medicinal chemistry, Nov-10, Volume: 123Chalcogen containing heterocyclic scaffolds: New hybrids with antitumoral activity.
AID435854Percentage IKK-beta activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1423307Inhibition of EGFR in human HeLa cells assessed as reduction in EGF-stimulated ERK1/2 phosphorylation at T202/Y204 at 100 nM preincubated for 10 mins followed by EGF stimulation measured after 5 mins by Western blot analysis2018Journal of medicinal chemistry, 12-13, Volume: 61, Issue:23
Neolymphostin A Is a Covalent Phosphoinositide 3-Kinase (PI3K)/Mammalian Target of Rapamycin (mTOR) Dual Inhibitor That Employs an Unusual Electrophilic Vinylogous Ester.
AID221648In vivo inhibition of tumor growth in LX-1 lung model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID428306Stability in PBS at pH 7.4 assessed as half life at 1.5 mM by HPLC in presence of NAc-lysine2009Bioorganic & medicinal chemistry letters, Aug-01, Volume: 19, Issue:15
A stabilized demethoxyviridin derivative inhibits PI3 kinase.
AID1503206Cytotoxicity against HEK293 cells assessed as effect on cell viability at 200 nM2017Journal of natural products, 10-27, Volume: 80, Issue:10
Scalaradial Is a Potent Inhibitor of Transient Receptor Potential Melastatin 2 (TRPM2) Ion Channels.
AID239093Binding affinity for Phosphatidylinositol 3-kinase isolated from HeLa cells; Range is 20-1202005Journal of medicinal chemistry, Jan-27, Volume: 48, Issue:2
Selective benzopyranone and pyrimido[2,1-a]isoquinolin-4-one inhibitors of DNA-dependent protein kinase: synthesis, structure-activity studies, and radiosensitization of a human tumor cell line in vitro.
AID719910Inhibition of PI3Kdelta2012Journal of medicinal chemistry, Oct-25, Volume: 55, Issue:20
PI3Kδ and PI3Kγ as targets for autoimmune and inflammatory diseases.
AID435417Percentage PAK4 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID134857In vivo inhibition of tumor growth B-16 melanoma model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID380741Antifungal activity against Candida albicans ATCC 90028 at 37 degC after 18 to 24 hrs2006Journal of natural products, Mar, Volume: 69, Issue:3
N-Methyl-4-hydroxy-2-pyridinone analogues from Fusarium oxysporum.
AID549470Inhibition of human PI3Kalpha expressed in Sf9 cells by fluorescent polarization assay2010Journal of medicinal chemistry, Dec-23, Volume: 53, Issue:24
Synthesis of phosphatidylinositol 3-kinase (PI3K) inhibitory analogues of the sponge meroterpenoid liphagal.
AID263886Inhibition of PI3 kinase p110alpha/p85-alpha complex2006Bioorganic & medicinal chemistry letters, May-01, Volume: 16, Issue:9
Synthesis of fluorescent derivatives of wortmannin and demethoxyviridin as probes for phosphatidylinositol 3-kinase.
AID1235407Inhibition of mTOR (unknown origin) assessed as p70S6K phosphorylation after 30 mins by ELISA2015Bioorganic & medicinal chemistry, Aug-01, Volume: 23, Issue:15
4-(N-Phenyl-N'-substituted benzenesulfonyl)-6-(4-hydroxyphenyl)quinolines as inhibitors of mammalian target of rapamycin.
AID435820Percentage PKCalpha activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435669Percentage PDK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435493Percentage PKD1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID134872In vivo inhibition of tumor growth in Lewis lung model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID512327Inhibition of His-tagged human SAPK2b/p38b2 expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID1512670Inhibition of class 2 PI3K (unknown origin) using Ptdlns as substrate incubated for 10 mins before [gamma-32P]ATP addition measured after 10 mins by liquid scintillation counting method2018Journal of medicinal chemistry, 06-14, Volume: 61, Issue:11
Design of Small Molecule Autophagy Modulators: A Promising Druggable Strategy.
AID155508Inhibition of Phosphatidylinositol 3-kinase from bovine brain1996Journal of medicinal chemistry, Dec-06, Volume: 39, Issue:25
Synthesis and in vitro evaluation of new wortmannin esters: potent inhibitors of phosphatidylinositol 3-kinase.
AID435747Percentage PRAK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435427Percentage PKBalpha activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435338Percentage CaMK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1333484Inhibition of Akt in human MDA-MB-231 cells assessed as ratio of phosphorylated GSK-3beta to GAPDH expression level at 100 nM after 48 hrs by immunoblot analysis (Rvb = 0.14 to 1.50 No_unit)2016European journal of medicinal chemistry, Nov-29, Volume: 1242-Azetidinones: Synthesis and biological evaluation as potential anti-breast cancer agents.
AID1423305Inhibition of PI3K in human HeLa cells assessed as reduction in EGF-stimulated AKT phosphorylation at S473 at 100 nM preincubated for 10 mins followed by EGF stimulation measured after 5 mins by Western blot analysis2018Journal of medicinal chemistry, 12-13, Volume: 61, Issue:23
Neolymphostin A Is a Covalent Phosphoinositide 3-Kinase (PI3K)/Mammalian Target of Rapamycin (mTOR) Dual Inhibitor That Employs an Unusual Electrophilic Vinylogous Ester.
AID436072Percentage CK1delta activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1423293Binding affinity to human PI3Kalpha after 1 hr by KINOMEscan assay2018Journal of medicinal chemistry, 12-13, Volume: 61, Issue:23
Neolymphostin A Is a Covalent Phosphoinositide 3-Kinase (PI3K)/Mammalian Target of Rapamycin (mTOR) Dual Inhibitor That Employs an Unusual Electrophilic Vinylogous Ester.
AID512345Inhibition of His-tagged human LCK expressed in Sf9 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID134864In vivo inhibition of tumor growth in C3H Mammary model was evaluated at dose 1.25 mg/kg peroral administration; range is 60-79%1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID360392Inhibition of recombinant Plk3 expressed in human GM00637 cells at 1 uM2007The Journal of biological chemistry, Jan-26, Volume: 282, Issue:4
Polo-like kinases inhibited by wortmannin. Labeling site and downstream effects.
AID435713Percentage CHK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1503202Inhibition of human FLAG-tagged TRPM2 expressed in HEK293 cells assessed as reduction in ADPR-induced intracellular calcium flux at 20 to 200 nM measured after 60 mins by whole cell patch clamp electrophysiology method2017Journal of natural products, 10-27, Volume: 80, Issue:10
Scalaradial Is a Potent Inhibitor of Transient Receptor Potential Melastatin 2 (TRPM2) Ion Channels.
AID436086Percentage HIPK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435260Percentage RSK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID221654In vivo inhibition of tumor growth in VRC5 colon model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID305330Inhibition of fMLP-induced superoxide production in human neutrophils2007Bioorganic & medicinal chemistry letters, Feb-01, Volume: 17, Issue:3
Design and synthesis of phenethyl benzo[1,4]oxazine-3-ones as potent inhibitors of PI3Kinasegamma.
AID435987Percentage PRK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1917569Inhibition of PI4KB catalytic domain (unknown origin) assessed as enzyme residual activity incubated for 60 mins using ATP as substrate by ATP-Glo luminescent assay2022Bioorganic & medicinal chemistry letters, 11-15, Volume: 76Structure-based design and modular synthesis of novel PI4K class II inhibitors bearing a 4-aminoquinazoline scaffold.
AID435738Percentage p38delta MAPK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1503210Cytotoxicity against HEK293 cells assessed as cell rounding at 200 nM2017Journal of natural products, 10-27, Volume: 80, Issue:10
Scalaradial Is a Potent Inhibitor of Transient Receptor Potential Melastatin 2 (TRPM2) Ion Channels.
AID221641In vivo inhibition of tumor growth in CX-1 colon model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID221650In vivo inhibition of tumor growth in PACA-2 pancreatic model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID134876In vivo inhibition of tumor growth in X-5563 plasma cell myeloma model was evaluated at dose 1.25 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID719913Inhibition of PI3Kalpha2012Journal of medicinal chemistry, Oct-25, Volume: 55, Issue:20
PI3Kδ and PI3Kγ as targets for autoimmune and inflammatory diseases.
AID436071Percentage CHK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1512669Inhibition of class 1 PI3K (unknown origin) using Ptdlns as substrate incubated for 10 mins before [gamma-32P]ATP addition measured after 10 mins by liquid scintillation counting method2018Journal of medicinal chemistry, 06-14, Volume: 61, Issue:11
Design of Small Molecule Autophagy Modulators: A Promising Druggable Strategy.
AID1702055Inhibition of HDAC1 in human HeLa nuclear extract using Boc-Lys(Ac)-AMC as substrate measured after 2 hrs by fluorescence based assay2018Journal of medicinal chemistry, 02-22, Volume: 61, Issue:4
Design, Synthesis, and Preclinical Evaluation of Fused Pyrimidine-Based Hydroxamates for the Treatment of Hepatocellular Carcinoma.
AID435214Inhibition of SmMLCK in the presence of 50uM ATP2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435418Percentage PAK5 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID254664Inhibitory activity against MTOR2005Bioorganic & medicinal chemistry letters, Nov-01, Volume: 15, Issue:21
Novel indole alpha-methylene-gamma-lactones as potent inhibitors for AKT-mTOR signaling pathway kinases.
AID512343Inhibition of His-tagged human CK2 expressed in Sf9 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID221644In vivo inhibition of tumor growth in HC1 colon model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID155519Inhibition of phosphatidylinositol-3-kinase (P13-K)2003Journal of medicinal chemistry, Apr-10, Volume: 46, Issue:8
Kinase inhibitors: not just for kinases anymore.
AID694027Cytotoxicity against human MCF7 cells after 72 hrs by MTS/PMS assay2012Bioorganic & medicinal chemistry letters, Nov-15, Volume: 22, Issue:22
Viridin analogs derived from steroidal building blocks.
AID512324Inhibition of His-tagged human MAPK2/ERK2 expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID370563Inhibition of Escherichia coli D-alanine-D-alanine ligase B assessed as residual activity at 2 mM preincubated for 30 mins by malachite green assay2009Bioorganic & medicinal chemistry, Feb-01, Volume: 17, Issue:3
ATP competitive inhibitors of D-alanine-D-alanine ligase based on protein kinase inhibitor scaffolds.
AID436036Percentage Lck activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435228Percentage ERK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID221638In vivo inhibition of tumor growth PANC-1 pancreatic model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID524790Antiplasmodial activity against Plasmodium falciparum 3D7 after 72 hrs by SYBR green assay2009Nature chemical biology, Oct, Volume: 5, Issue:10
Genetic mapping of targets mediating differential chemical phenotypes in Plasmodium falciparum.
AID550538Inhibition of MLCK by HTRF assay2011Bioorganic & medicinal chemistry, Jan-01, Volume: 19, Issue:1
Synthesis and biological evaluation of 7-substituted-1-(3-bromophenylamino)isoquinoline-4-carbonitriles as inhibitors of myosin light chain kinase and epidermal growth factor receptor.
AID512439Inhibition of His-tagged human SkMLCK expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID1917568Inhibition of PI4KA catalytic domain (unknown origin) assessed as enzyme residual activity incubated for 60 mins using ATP as substrate by ATP-Glo luminescent assay2022Bioorganic & medicinal chemistry letters, 11-15, Volume: 76Structure-based design and modular synthesis of novel PI4K class II inhibitors bearing a 4-aminoquinazoline scaffold.
AID512332Inhibition of His-tagged human MSK1 expressed in Sf9 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID221651In vivo inhibition of tumor growth in PACA-2 pancreatic model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID435706Percentage BRSK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID436037Percentage MAPKAPK3 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435300Percentage PAK6 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435317Percentage PIM1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1423306Inhibition of PI3K in human HeLa cells assessed as reduction in EGF-stimulated AKT phosphorylation at T308 at 100 nM preincubated for 10 mins followed by EGF stimulation measured after 5 mins by Western blot analysis2018Journal of medicinal chemistry, 12-13, Volume: 61, Issue:23
Neolymphostin A Is a Covalent Phosphoinositide 3-Kinase (PI3K)/Mammalian Target of Rapamycin (mTOR) Dual Inhibitor That Employs an Unusual Electrophilic Vinylogous Ester.
AID43383Cytotoxicity in rapidly proliferating CCRF-CEM cell lines after 72 hr exposure1996Journal of medicinal chemistry, Dec-06, Volume: 39, Issue:25
Synthesis and in vitro evaluation of new wortmannin esters: potent inhibitors of phosphatidylinositol 3-kinase.
AID221652In vivo inhibition of tumor growth in PANC-1 pancreatic model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID239094Binding affinity for DNA dependent protein kinase isolated from HeLa cells; Range is 20-1202005Journal of medicinal chemistry, Jan-27, Volume: 48, Issue:2
Selective benzopyranone and pyrimido[2,1-a]isoquinolin-4-one inhibitors of DNA-dependent protein kinase: synthesis, structure-activity studies, and radiosensitization of a human tumor cell line in vitro.
AID1473738Inhibition of human BSEP overexpressed in Sf9 cell membrane vesicles assessed as uptake of [3H]-taurocholate in presence of ATP measured after 15 to 20 mins by membrane vesicle transport assay2013Toxicological sciences : an official journal of the Society of Toxicology, Nov, Volume: 136, Issue:1
A multifactorial approach to hepatobiliary transporter assessment enables improved therapeutic compound development.
AID512344Inhibition of PHK from rabbit skeletal muscle at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID512346Inhibition of His-tagged human CHK1 expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID435215Percentage AMPK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1525546Inhibition of GST-tagged PI3K gamma mutant (unknown origin) expressed in HEK293 cells after 15 mins by immunoblot analysis2019Journal of medicinal chemistry, 11-27, Volume: 62, Issue:22
Why Some Targets Benefit from beyond Rule of Five Drugs.
AID549471Inhibition of human PI3Kgamma expressed in Sf9 cells by fluorescent polarization assay2010Journal of medicinal chemistry, Dec-23, Volume: 53, Issue:24
Synthesis of phosphatidylinositol 3-kinase (PI3K) inhibitory analogues of the sponge meroterpenoid liphagal.
AID697853Inhibition of horse BChE at 2 mg/ml by Ellman's method2012Bioorganic & medicinal chemistry, Nov-15, Volume: 20, Issue:22
Exploration of natural compounds as sources of new bifunctional scaffolds targeting cholinesterases and beta amyloid aggregation: the case of chelerythrine.
AID435250Percentage MSK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID549727Inhibition of human p110alpha PI3K fragment by AlphaScreen assay2011Bioorganic & medicinal chemistry letters, Jan-15, Volume: 21, Issue:2
Discovery of novel class 1 phosphatidylinositide 3-kinases (PI3K) fragment inhibitors through structure-based virtual screening.
AID435995Percentage SRPK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID266954Inhibition of human PI3Kalpha2006Journal of medicinal chemistry, Jun-29, Volume: 49, Issue:13
Furan-2-ylmethylene thiazolidinediones as novel, potent, and selective inhibitors of phosphoinositide 3-kinase gamma.
AID435734Percentage NEK6 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1443980Inhibition of human BSEP expressed in fall armyworm sf9 cell plasma membrane vesicles assessed as reduction in vesicle-associated [3H]-taurocholate transport preincubated for 10 mins prior to ATP addition measured after 15 mins in presence of [3H]-tauroch2010Toxicological sciences : an official journal of the Society of Toxicology, Dec, Volume: 118, Issue:2
Interference with bile salt export pump function is a susceptibility factor for human liver injury in drug development.
AID134860In vivo inhibition of tumor growth in C-26 colon model was evaluated dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID524794Antiplasmodial activity against Plasmodium falciparum GB4 after 72 hrs by SYBR green assay2009Nature chemical biology, Oct, Volume: 5, Issue:10
Genetic mapping of targets mediating differential chemical phenotypes in Plasmodium falciparum.
AID435350Percentage ERK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID524791Antiplasmodial activity against Plasmodium falciparum 7G8 after 72 hrs by SYBR green assay2009Nature chemical biology, Oct, Volume: 5, Issue:10
Genetic mapping of targets mediating differential chemical phenotypes in Plasmodium falciparum.
AID366247Inhibition of P13K at 10 uM fluorescence energy transfer assay2008Journal of medicinal chemistry, Aug-14, Volume: 51, Issue:15
Slow self-activation enhances the potency of viridin prodrugs.
AID1333481Inhibition of Akt in human MDA-MB-231 cells assessed as ratio of phosphorylated Akt to GAPDH expression level at 100 nM after 48 hrs by immunoblot analysis (Rvb = 0.33 to 0.81 No_unit)2016European journal of medicinal chemistry, Nov-29, Volume: 1242-Azetidinones: Synthesis and biological evaluation as potential anti-breast cancer agents.
AID134537IIn vivo inhibition of tumor growth in B-16 melanoma model was evaluated by inhibition of tumor growth at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID366246Inhibition of PI3K by fluorescence energy transfer assay2008Journal of medicinal chemistry, Aug-14, Volume: 51, Issue:15
Slow self-activation enhances the potency of viridin prodrugs.
AID760008Downregulation of Gli1 mRNA expression in human DaOY cells at 2.5 uM relative to DMSO-treated control2013ACS medicinal chemistry letters, Jul-11, Volume: 4, Issue:7
Identification of vitamin d3-based hedgehog pathway inhibitors that incorporate an aromatic a-ring isostere.
AID512330Inhibition of MAPKAPK1b from rabbit skeletal muscle at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID694026Inhibition of human recombinant P110alpha/p85alpha using phosphatidyl inositol as substrate after 1 hr by ADP-Glo Kinase assay2012Bioorganic & medicinal chemistry letters, Nov-15, Volume: 22, Issue:22
Viridin analogs derived from steroidal building blocks.
AID512335Inhibition of His-tagged human PKCalpha expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID435454Percentage CaMKKalpha activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID360389Inhibition of recombinant Plk3 assessed as casein substrate phosphorylation2007The Journal of biological chemistry, Jan-26, Volume: 282, Issue:4
Polo-like kinases inhibited by wortmannin. Labeling site and downstream effects.
AID1473740Inhibition of human MRP3 overexpressed in Sf9 insect cell membrane vesicles assessed as uptake of [3H]-estradiol-17beta-D-glucuronide in presence of ATP and GSH measured after 10 mins by membrane vesicle transport assay2013Toxicological sciences : an official journal of the Society of Toxicology, Nov, Volume: 136, Issue:1
A multifactorial approach to hepatobiliary transporter assessment enables improved therapeutic compound development.
AID360388Inhibition of AX-7503 binding to recombinant Plk1 by Western blot2007The Journal of biological chemistry, Jan-26, Volume: 282, Issue:4
Polo-like kinases inhibited by wortmannin. Labeling site and downstream effects.
AID549728Inhibition of human PI3K p110beta catalytic subunit by AlphaScreen competition assay2011Bioorganic & medicinal chemistry letters, Jan-15, Volume: 21, Issue:2
Discovery of novel class 1 phosphatidylinositide 3-kinases (PI3K) fragment inhibitors through structure-based virtual screening.
AID1473739Inhibition of human MRP2 overexpressed in Sf9 cell membrane vesicles assessed as uptake of [3H]-estradiol-17beta-D-glucuronide in presence of ATP and GSH measured after 20 mins by membrane vesicle transport assay2013Toxicological sciences : an official journal of the Society of Toxicology, Nov, Volume: 136, Issue:1
A multifactorial approach to hepatobiliary transporter assessment enables improved therapeutic compound development.
AID435123Percentage NEK7 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID360393Inhibition of AX-7503 binding to recombinant Plk2 at 1 uM by Western blot2007The Journal of biological chemistry, Jan-26, Volume: 282, Issue:4
Polo-like kinases inhibited by wortmannin. Labeling site and downstream effects.
AID435962Percentage CDK2-cyclinA activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435979Percentage MST2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID719912Inhibition of PI3Kbeta2012Journal of medicinal chemistry, Oct-25, Volume: 55, Issue:20
PI3Kδ and PI3Kγ as targets for autoimmune and inflammatory diseases.
AID524796Antiplasmodial activity against Plasmodium falciparum W2 after 72 hrs by SYBR green assay2009Nature chemical biology, Oct, Volume: 5, Issue:10
Genetic mapping of targets mediating differential chemical phenotypes in Plasmodium falciparum.
AID1768752Inhibition of PI3K in human HCC827 cells assessed as decrease in phosphorylation incubated for 24 hrs by cell PI3 kinase activity photometric assay2021Bioorganic & medicinal chemistry, 09-15, Volume: 46Design, synthesis, and biological evaluation of novel 6-(pyridin-3-yl) quinazolin-4(3H)-one derivatives as potential anticancer agents via PI3K inhibition.
AID512341Inhibition of rat ROCK2 expressed in Sf9 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID221642In vivo inhibition of tumor growth in CX-1 colon model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID221646In vivo inhibition of tumor growth in IGROV1 ovarian model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID221645In vivo inhibition of tumor growth in HC1 colon model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID435461Percentage CK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID221649In vivo inhibition of tumor growth in MX-1 mammary model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID435865Percentage MKK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1702056Inhibition of human full-length recombinant p110alpha/p85alpha co-expressed in baculovirus expression system using PIP2:PS lipid as substrate incubated for 1 hr in presence of ATP by ADP-Glo assay2018Journal of medicinal chemistry, 02-22, Volume: 61, Issue:4
Design, Synthesis, and Preclinical Evaluation of Fused Pyrimidine-Based Hydroxamates for the Treatment of Hepatocellular Carcinoma.
AID435375Percentage RSK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID512339Inhibition of His-tagged human S6K1 expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID134875In vivo inhibition of tumor growth in M-5076 ovarian model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID435723Percentage GSK3-beta activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID436083Percentage ERK8 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID512336Inhibition of His-tagged human PDK1 expressed in Sf21 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID134861In vivo inhibition of tumor growth in C-26 colon model was evaluated dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID1423296Binding affinity to human PI3Kdelta after 1 hr by KINOMEscan assay2018Journal of medicinal chemistry, 12-13, Volume: 61, Issue:23
Neolymphostin A Is a Covalent Phosphoinositide 3-Kinase (PI3K)/Mammalian Target of Rapamycin (mTOR) Dual Inhibitor That Employs an Unusual Electrophilic Vinylogous Ester.
AID435814Percentage PIM3 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID360387Inhibition of AX-7503 binding to recombinant Plk3 expressed in HeLa cells by Western blot2007The Journal of biological chemistry, Jan-26, Volume: 282, Issue:4
Polo-like kinases inhibited by wortmannin. Labeling site and downstream effects.
AID366248Antiproliferative activity against human A549 cells after 48 hrs by SRB method2008Journal of medicinal chemistry, Aug-14, Volume: 51, Issue:15
Slow self-activation enhances the potency of viridin prodrugs.
AID435728Percentage JNK3 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435176Percentage PIM2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID726172Inhibition of PI3K p110alpha/p85alpha (unknown origin) by ADP-Glo assay2013European journal of medicinal chemistry, Feb, Volume: 60Synthesis and biological evaluation of novel coumarin-pyrazoline hybrids endowed with phenylsulfonyl moiety as antitumor agents.
AID512338Inhibition of His-tagged human SGK expressed in Sf9 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID435378Percentage S6K1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1157271Effect on total AKT protein level in human MDA-MB-231 cells at 1 to 10 uM after 24 hrs by Western blot analysis2014Journal of natural products, May-23, Volume: 77, Issue:5
Rhapontigenin suppresses cell migration and invasion by inhibiting the PI3K-dependent Rac1 signaling pathway in MDA-MB-231 human breast cancer cells.
AID428305Stability in PBS at pH 7.4 assessed as half life at 1.5 mM by HPLC in presence of proline2009Bioorganic & medicinal chemistry letters, Aug-01, Volume: 19, Issue:15
A stabilized demethoxyviridin derivative inhibits PI3 kinase.
AID719911Inhibition of PI3Kgamma2012Journal of medicinal chemistry, Oct-25, Volume: 55, Issue:20
PI3Kδ and PI3Kγ as targets for autoimmune and inflammatory diseases.
AID694028Inhibition of PI3K2012Bioorganic & medicinal chemistry letters, Nov-15, Volume: 22, Issue:22
Viridin analogs derived from steroidal building blocks.
AID368408Cytotoxicity against human A549 cells after 24 hrs by propidium iodide assay2009Bioorganic & medicinal chemistry, Feb-01, Volume: 17, Issue:3
Isolation, structure elucidation and cytotoxic evaluation of endiandrin B from the Australian rainforest plant Endiandra anthropophagorum.
AID1512671Inhibition of class 3 PI3K (unknown origin) using Ptdlns as substrate incubated for 10 mins before [gamma-32P]ATP addition measured after 10 mins by liquid scintillation counting method2018Journal of medicinal chemistry, 06-14, Volume: 61, Issue:11
Design of Small Molecule Autophagy Modulators: A Promising Druggable Strategy.
AID155514In vitro inhibitory activity against Phosphatidylinositol 3-Kinase1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID1469825Inhibition of PI3K (unknown origin)2017Journal of medicinal chemistry, 02-09, Volume: 60, Issue:3
Covalent Modifiers: A Chemical Perspective on the Reactivity of α,β-Unsaturated Carbonyls with Thiols via Hetero-Michael Addition Reactions.
AID435233Percentage HIPK3 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID221640In vivo inhibition of tumor growth in BXPC-3 pancreatic model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID428303Stability in PBS at pH 7.4 assessed as half life at 1.5 mM by HPLC in presence of glycine2009Bioorganic & medicinal chemistry letters, Aug-01, Volume: 19, Issue:15
A stabilized demethoxyviridin derivative inhibits PI3 kinase.
AID435847Percentage DYRK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1876329Antiviral activity against MERS-CoV infected in 1 hr pretreated human Huh-7 cells assessed as inhibition of viral growth at 10 uM measured after 48 hrs by plaque reduction assay relative to control2022Journal of medicinal chemistry, 01-27, Volume: 65, Issue:2
Kinases as Potential Therapeutic Targets for Anti-coronaviral Therapy.
AID435539Percentage PHK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID305329Inhibition of PI3Kgamma assessed as inhibition of 32P-PIP3 formation2007Bioorganic & medicinal chemistry letters, Feb-01, Volume: 17, Issue:3
Design and synthesis of phenethyl benzo[1,4]oxazine-3-ones as potent inhibitors of PI3Kinasegamma.
AID1423298Binding affinity to human mTOR after 1 hr by KINOMEscan assay2018Journal of medicinal chemistry, 12-13, Volume: 61, Issue:23
Neolymphostin A Is a Covalent Phosphoinositide 3-Kinase (PI3K)/Mammalian Target of Rapamycin (mTOR) Dual Inhibitor That Employs an Unusual Electrophilic Vinylogous Ester.
AID428307Inhibition of PI3 kinase2009Bioorganic & medicinal chemistry letters, Aug-01, Volume: 19, Issue:15
A stabilized demethoxyviridin derivative inhibits PI3 kinase.
AID205135Inhibition of Smooth muscle myosin light chain kinase (mMLCK)2003Journal of medicinal chemistry, Apr-10, Volume: 46, Issue:8
Kinase inhibitors: not just for kinases anymore.
AID512337Inhibition of human PKBalpha expressed in SF9 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID705450Inhibition of DNA-PK isolated from human HeLa cell extract2012Bioorganic & medicinal chemistry letters, Sep-01, Volume: 22, Issue:17
Modulation of DNA repair by pharmacological inhibitors of the PIKK protein kinase family.
AID435756Percentage Src activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435223Percentage CSK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID266953Inhibition of human PI3Kgamma2006Journal of medicinal chemistry, Jun-29, Volume: 49, Issue:13
Furan-2-ylmethylene thiazolidinediones as novel, potent, and selective inhibitors of phosphoinositide 3-kinase gamma.
AID435881Percentage ROCK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID512442Inhibition of chicken SmMLCK expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID512323Inhibition of rabbit MKK1 expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID134859In vivo inhibition of tumor growth in 6C3HED lymphosarcomal was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID512329Inhibition of His-tagged human SAPK4/p38delta expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID435501Percentage SmMLCK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1503211Cytotoxicity against HEK293 cells assessed as granule formation at 200 nM2017Journal of natural products, 10-27, Volume: 80, Issue:10
Scalaradial Is a Potent Inhibitor of Transient Receptor Potential Melastatin 2 (TRPM2) Ion Channels.
AID1185177Inhibition of PI3Kgamma (unknown origin) assessed as decrease in fluorescence intensity using phosphorylated substrate2014European journal of medicinal chemistry, Sep-12, Volume: 84Discovery of nanomolar phosphoinositide 3-kinase gamma (PI3Kγ) inhibitors using ligand-based modeling and virtual screening followed by in vitro analysis.
AID428304Stability in RPMI culture media assessed as half life at 1.5 mM by HPLC2009Bioorganic & medicinal chemistry letters, Aug-01, Volume: 19, Issue:15
A stabilized demethoxyviridin derivative inhibits PI3 kinase.
AID435578Inhibition of PLK1 in the presence of 5uM ATP2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID221637In vivo inhibition of tumor growth MX-1 mammary model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID435704Percentage Aurora B activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID524793Antiplasmodial activity against Plasmodium falciparum Dd2 after 72 hrs by SYBR green assay2009Nature chemical biology, Oct, Volume: 5, Issue:10
Genetic mapping of targets mediating differential chemical phenotypes in Plasmodium falciparum.
AID1473741Inhibition of human MRP4 overexpressed in Sf9 cell membrane vesicles assessed as uptake of [3H]-estradiol-17beta-D-glucuronide in presence of ATP and GSH measured after 20 mins by membrane vesicle transport assay2013Toxicological sciences : an official journal of the Society of Toxicology, Nov, Volume: 136, Issue:1
A multifactorial approach to hepatobiliary transporter assessment enables improved therapeutic compound development.
AID134873In vivo inhibition of tumor growth in Lewis lung model was evaluated at dose 1.50 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID435883Percentage SGK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435867Percentage NEK2a activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID428302Stability in PBS at pH 7.4 assessed as half life at 1.5 mM by HPLC2009Bioorganic & medicinal chemistry letters, Aug-01, Volume: 19, Issue:15
A stabilized demethoxyviridin derivative inhibits PI3 kinase.
AID1702058Antiproliferative activity against human PC-3 cells assessed as reduction in cell viability incubated for 72 hrs by sulforhodamine B assay/CellTiter-Glo luminescent assay2018Journal of medicinal chemistry, 02-22, Volume: 61, Issue:4
Design, Synthesis, and Preclinical Evaluation of Fused Pyrimidine-Based Hydroxamates for the Treatment of Hepatocellular Carcinoma.
AID435727Percentage JNK2 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID360391Inhibition of recombinant Plk3 expressed in human GM00637 cells at 1 uM assessed as decrease in p53 serine-20 phosphorylation2007The Journal of biological chemistry, Jan-26, Volume: 282, Issue:4
Polo-like kinases inhibited by wortmannin. Labeling site and downstream effects.
AID1157270Inhibition of PI3K in human MDA-MB-231 cells assessed as inhibition of AKT phosphorylation at 1 to 10 uM after 24 hrs by Western blot analysis2014Journal of natural products, May-23, Volume: 77, Issue:5
Rhapontigenin suppresses cell migration and invasion by inhibiting the PI3K-dependent Rac1 signaling pathway in MDA-MB-231 human breast cancer cells.
AID512328Inhibition of His-tagged human SAPK3/p38gamma expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID538370Cytotoxicity against human LNCAP cells at 100 pM to 1 uM2010Journal of medicinal chemistry, Nov-11, Volume: 53, Issue:21
Synthesis and biological analysis of prostate-specific membrane antigen-targeted anticancer prodrugs.
AID697852Inhibition of electric eel AChE at 2 mg/ml by Ellman's method2012Bioorganic & medicinal chemistry, Nov-15, Volume: 20, Issue:22
Exploration of natural compounds as sources of new bifunctional scaffolds targeting cholinesterases and beta amyloid aggregation: the case of chelerythrine.
AID435842Percentage Aurora C activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID512334Inhibition of bovine heart PKA at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID512333Inhibition of His-tagged human PRAK expressed in Sf9 cells at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID1423294Binding affinity to human PI3Kbeta after 1 hr by KINOMEscan assay2018Journal of medicinal chemistry, 12-13, Volume: 61, Issue:23
Neolymphostin A Is a Covalent Phosphoinositide 3-Kinase (PI3K)/Mammalian Target of Rapamycin (mTOR) Dual Inhibitor That Employs an Unusual Electrophilic Vinylogous Ester.
AID435613Percentage MNK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID435718Percentage EF2K activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID221653In vivo inhibition of tumor growth in VRC5 colon model was evaluated at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID435363Percentage MELK activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID549731Inhibition of human PI3K p110delta catalytic subunit by AlphaScreen assay2011Bioorganic & medicinal chemistry letters, Jan-15, Volume: 21, Issue:2
Discovery of novel class 1 phosphatidylinositide 3-kinases (PI3K) fragment inhibitors through structure-based virtual screening.
AID435541Percentage PKA activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID221655In vivo toxicity against PI 3-Kinase in GC3 colon model was evaluated by inhibition of tumor growth at dose 0.75 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID1423295Binding affinity to human PI3Kgamma after 1 hr by KINOMEscan assay2018Journal of medicinal chemistry, 12-13, Volume: 61, Issue:23
Neolymphostin A Is a Covalent Phosphoinositide 3-Kinase (PI3K)/Mammalian Target of Rapamycin (mTOR) Dual Inhibitor That Employs an Unusual Electrophilic Vinylogous Ester.
AID221643In vivo inhibition of tumor growth in GC3 colon model was evaluated at dose 0.38 mg/kg peroral administration1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID512466Inhibition of chicken SmMLCK expressed in Escherichia coli2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID221639In vivo inhibition of tumor growth in BXPC-3 pancreatic model was evaluated at dose 0.75 mg/kg peroral administration; range is 60-79%1996Journal of medicinal chemistry, Mar-01, Volume: 39, Issue:5
Studies on the mechanism of phosphatidylinositol 3-kinase inhibition by wortmannin and related analogs.
AID1423308Inhibition of EGFR in human HeLa cells assessed as reduction in EGF-stimulated EGFR Y1068 phosphorylation at 100 nM preincubated for 10 mins followed by EGF stimulation measured after 5 mins by Western blot analysis2018Journal of medicinal chemistry, 12-13, Volume: 61, Issue:23
Neolymphostin A Is a Covalent Phosphoinositide 3-Kinase (PI3K)/Mammalian Target of Rapamycin (mTOR) Dual Inhibitor That Employs an Unusual Electrophilic Vinylogous Ester.
AID512331Inhibition of His-tagged human MAPKAPK2 expressed in Escherichia coli at 1 uM2000The Biochemical journal, Oct-01, Volume: 351, Issue:Pt 1
Specificity and mechanism of action of some commonly used protein kinase inhibitors.
AID218679Inhibition of beta-lactamase from Escherichia coli2003Journal of medicinal chemistry, Apr-10, Volume: 46, Issue:8
Kinase inhibitors: not just for kinases anymore.
AID435374Percentage PLK1 activity remaining in the presence of 1uM inhibitor2007The Biochemical journal, Dec-15, Volume: 408, Issue:3
The selectivity of protein kinase inhibitors: a further update.
AID1798511Determination of PI3K Activity from Article 10.1073/pnas.0606956103: \\Phosphoinositide 3-kinase gamma/delta inhibition limits infarct size after myocardial ischemia/reperfusion injury.\\2006Proceedings of the National Academy of Sciences of the United States of America, Dec-26, Volume: 103, Issue:52
Phosphoinositide 3-kinase gamma/delta inhibition limits infarct size after myocardial ischemia/reperfusion injury.
AID1798514PLK Kinase Assay from Article 10.1021/bi7008745: \\Pharmacological and functional comparison of the polo-like kinase family: insight into inhibitor and substrate specificity.\\2007Biochemistry, Aug-21, Volume: 46, Issue:33
Pharmacological and functional comparison of the polo-like kinase family: insight into inhibitor and substrate specificity.
AID1797362PtdIns 3-Kinase In Vitro Assay from Article 10.1016/s1097-2765(05)00089-4: \\Structural determinants of phosphoinositide 3-kinase inhibition by wortmannin, LY294002, quercetin, myricetin, and staurosporine.\\2000Molecular cell, Oct, Volume: 6, Issue:4
Structural determinants of phosphoinositide 3-kinase inhibition by wortmannin, LY294002, quercetin, myricetin, and staurosporine.
AID1798510PI3Kgamma Inhibition Assay from Article 10.1016/j.bmcl.2006.10.080: \\Design and synthesis of phenethyl benzo[1,4]oxazine-3-ones as potent inhibitors of PI3Kinasegamma.\\2007Bioorganic & medicinal chemistry letters, Feb-01, Volume: 17, Issue:3
Design and synthesis of phenethyl benzo[1,4]oxazine-3-ones as potent inhibitors of PI3Kinasegamma.
AID1799520Enzyme Assay from Article 10.1016/j.chembiol.2007.02.007: \\Covalent reactions of wortmannin under physiological conditions.\\2007Chemistry & biology, Mar, Volume: 14, Issue:3
Covalent reactions of wortmannin under physiological conditions.
AID588519A screen for compounds that inhibit viral RNA polymerase binding and polymerization activities2011Antiviral research, Sep, Volume: 91, Issue:3
High-throughput screening identification of poliovirus RNA-dependent RNA polymerase inhibitors.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (3,987)

TimeframeStudies, This Drug (%)All Drugs %
pre-19904 (0.10)18.7374
1990's1040 (26.08)18.2507
2000's2104 (52.77)29.6817
2010's769 (19.29)24.3611
2020's70 (1.76)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 43.37

According to the monthly volume, diversity, and competition of internet searches for this compound, as well the volume and growth of publications, there is estimated to be strong demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index43.37 (24.57)
Research Supply Index8.31 (2.92)
Research Growth Index6.91 (4.65)
Search Engine Demand Index68.31 (26.88)
Search Engine Supply Index2.01 (0.95)

This Compound (43.37)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials2 (0.05%)5.53%
Reviews45 (1.11%)6.00%
Case Studies0 (0.00%)4.05%
Observational1 (0.02%)0.25%
Other4,018 (98.82%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]