Page last updated: 2024-10-15

guanosine triphosphate

Description

Guanosine Triphosphate: Guanosine 5'-(tetrahydrogen triphosphate). A guanine nucleotide containing three phosphate groups esterified to the sugar moiety. [Medical Subject Headings (MeSH), National Library of Medicine, extracted Dec-2023]

Cross-References

ID SourceID
PubMed CID135398633
CHEMBL ID1233147
CHEBI ID15996
SCHEMBL ID44408
SCHEMBL ID15900104
MeSH IDM0009694

Synonyms (51)

Synonym
CHEMBL1233147
gtpl1742
[(2r,3s,4r,5r)-5-(2-amino-6-oxo-3h-purin-9-yl)-3,4-dihydroxyoxolan-2-yl]methyl (hydroxy-phosphonooxyphosphoryl) hydrogen phosphate
[[(2r,3s,4r,5r)-5-(2-amino-6-oxo-1h-purin-9-yl)-3,4-dihydroxy-tetrahydrofuran-2-yl]methoxy-hydroxy-phosphoryl] phosphono hydrogen phosphate
h4gtp
guanosine 5'-(tetrahydrogen triphosphate)
guanosine triphosphate
CHEBI:15996 ,
brn 1201437
einecs 201-647-3
guanosine-5'-triphosphate
guanosine 5'-triphosphoric acid
guanosine, mono(tetrahydrogen triphosphate) (ester)
guanosine triphosphate (6cl)
5'-gtp
6h-purin-6-one, 2-amino-1,9-dihydro-9-[5-o-[hydroxy[[hydroxy(phosphonooxy)phosphinyl]oxy]phosphinyl]-beta-d-ribofuranosyl]-
C00044
86-01-1
GTP ,
1JLR
1J2J
DB04137
1E96
NCGC00163327-01
6A1C76E9-BEFB-4684-B0C1-8C50AE53C506
cdc48 protein
139021-15-1
36051-31-7
01wv7j708x ,
unii-01wv7j708x
hemoglobin f-saskatoon
154765-83-0
SCHEMBL44408
DTXSID30235328
XKMLYUALXHKNFT-UUOKFMHZSA-N
SCHEMBL15900104
guanosine 5a(2)-triphosphate sodium salt hydrate
({[({[(2r,3s,4r,5r)-5-(2-amino-6-oxo-6,9-dihydro-1h-purin-9-yl)-3,4-dihydroxyoxolan-2-yl]methoxy}(hydroxy)phosphoryl)oxy](hydroxy)phosphoryl}oxy)phosphonic acid
guanosine 5'-triphosphate disodium
[3h]guanosine triphosphate
guanosintriphosphat
guanosine 5'-triphosphorate
guanosine mono(tetrahydrogen triphosphate) (ester)
136295-02-8
Q392227
[[(2r,3s,4r,5r)-5-(2-amino-6-oxo-1h-purin-9-yl)-3,4-dihydroxyoxolan-2-yl]methoxy-hydroxyphosphoryl] phosphono hydrogen phosphate
[[(2r,3s,4r,5r)-5-(2-amino-6-hydroxypurin-9-yl)-3,4-dihydroxyoxolan-2-yl]methoxy-hydroxyphosphoryl] phosphono hydrogen phosphate
benzenebutanoyl chloride, 4-(trifluoromethyl)-
HY-113225
gtp 100mm solution(guanosine-5'-triphosphate,trisodium salt)
CS-0059351

Research Excerpts

Overview

Ganosine triphosphate (GTP) is a key biomarker of multiple cellular processes and human diseases. GTP is an absolute requirement for tubulin polymerization in situ.

ExcerptReference
"Guanosine triphosphate (GTP) is a key biomarker of multiple cellular processes and human diseases. "( Chemosensing of Guanosine Triphosphate Based on a Fluorescent Dinuclear Zn(II)-Dipicolylamine Complex in Water.
Bautista-Renedo, JM; Bazany-Rodríguez, IJ; Dorazco-González, A; González-Rivas, N; Salomón-Flores, MK, 2020
)
"Guanosine triphosphate (GTP) is an absolute requirement for tubulin polymerization in situ. "( Aberrant guanosine triphosphate-beta-tubulin interaction in Alzheimer's disease.
Campbell, SR; Haley, BE; Khatoon, S; Slevin, JT, 1989
)

Effects

ExcerptReference
"Guanosine triphosphate (GTP) has been implicated in the regulation of Ca(2+)-mediated secretion from neutrophils. "( GTP-dependent permeabilized neutrophil secretion requires a freely diffusible cytosolic protein.
Ernst, JD; Rosales, JL, 2000
)

Actions

ExcerptReference
"Guanosine triphosphate (GTP) binding promotes the formation of a UreE2G2 complex, where UreG receives a nickel from UreE."( Moving nickel along the hydrogenase-urease maturation pathway.
Tsang, KL; Wong, KB, 2022
)

Treatment

ExcerptReference
"Guanosine triphosphate pretreatment, before incubation, allowed us to detect higher [125I]Tyr0-D-Trp8SRIF 14 binding site densities in hypothalamic structures such as preoptic and anterior hypothalamic areas and ventromedial and dorsomedial nuclei."( Regional distribution of somatostatin binding sites in the human hypothalamus: a quantitative autoradiographic study.
Bertherat, J; Champier, J; Chigr, F; Epelbaum, J; Jordan, D; Kopp, N; Najimi, M; Slama, A; Videau, C, 1991
)

Toxicity

ExcerptReference
" The results, in general, have shown low toxic effects, which can be summarized as a slight non-significant hepatomegalia in the rat with increased gamma-GTP and alkaline phosphatase values and a high urinary pH value; no histopathological changes were observed."( Subacute toxicity and maximum tolerable dose of sertaconazole in repeated administration studies.
Grau, MT; Ortíz, JA; Romero, A; Sacristán, A; Villamayor, F, 1992
)
"3 and 1 nM, respectively), with accumulation of cells arrested in mitosis at toxic concentrations, that both inhibited the polymerization of purified tubulin, and that both inhibited microtubule assembly dependent on microtubule-associated proteins."( Halichondrin B and homohalichondrin B, marine natural products binding in the vinca domain of tubulin. Discovery of tubulin-based mechanism of action by analysis of differential cytotoxicity data.
Bai, RL; Hamel, E; Herald, CL; Malspeis, L; Paull, KD; Pettit, GR, 1991
)
" Growth studies with various purine salvage pathway mutants and the ability of guanosine to prevent adenine toxicity indicated that adenine exerts its toxic effects by depleting guanine nucleotide pools."( Mechanism of adenine toxicity in Escherichia coli.
Levine, RA; Taylor, MW, 1982
)
" These results suggest that the depletion of GTP rather than that of dGTP produces toxic effects in S-49 cells and that GTP is required for DNA synthesis."( Guanine nucleotide depletion and toxicity in mouse T lymphoma (S-49) cells.
Cohen, MB; Maybaum, J; Sadee, W, 1981
)
" Our data also suggest that the drugs may reduce mutant HPRT-deficient somatic cells in vivo, and may cause enhanced adverse reactions in HPRT-deficient individuals."( Differential cytotoxic effects of mizoribine and its aglycone on human and murine cells and on normal and enzyme-deficient human cells.
Hakoda, M; Kamatani, N; Kashiwazaki, S; Terai, C; Yamanaka, H, 1995
)
" In most cases, the adverse effects were not evident during the immediate period of chlorpyrifos administration, but appeared after a delay of several days."( Cellular mechanisms for developmental toxicity of chlorpyrifos: targeting the adenylyl cyclase signaling cascade.
Padilla, S; Saleh, JL; Seidler, FJ; Slotkin, TA; Song, X; Zhang, J, 1997
)
" While the incidence of gastrointestinal adverse events in the NSAIDs group was higher than that in the GTP and GTP + NSAIDs groups."( Efficacy and safety of Gutong Patch compared with NSAIDs for knee osteoarthritis: A real-world multicenter, prospective cohort study in China.
Feng, B; Li, D; Li, T; Lv, Z; Wang, Y; Weng, X, 2023
)

Pharmacokinetics

ExcerptReference
" In the light of this, the pharmacodynamic action of mycophenolic acid on the radiolabelling of GTP and ATP by [14C]hypoxanthine in spleen and heart has been investigated in vivo in the rat as a preliminary to studies in tumor tissue."( Pharmacodynamics of the inhibition of GTP synthesis in vivo by mycophenolic acid.
Franklin, TJ; Morris, WP, 1994
)
"We prospectively assessed the pharmacokinetics of methotrexate, mercaptopurine, and erythrocyte thioguanine nucleotide levels in a homogenous population of children with lower risk acute lymphoblastic leukemia and correlated pharmacokinetic parameters with disease outcome."( Pharmacokinetics and pharmacodynamics of oral methotrexate and mercaptopurine in children with lower risk acute lymphoblastic leukemia: a joint children's cancer group and pediatric oncology branch study.
Ames, MM; Balis, FM; Bleyer, WA; Ge, J; Gilchrist, GS; Holcenberg, JS; Murphy, RF; Poplack, DG; Sather, HN; Tubergen, DG; Waskerwitz, MJ; Zimm, S, 1998
)
" Parallel plasma and cellular pharmacokinetic studies were conducted."( Compound GW506U78 in refractory hematologic malignancies: relationship between cellular pharmacokinetics and clinical response.
Ayres, M; Du, M; Gandhi, V; Keating, MJ; Kisor, DF; Kurtzberg, J; Mitchell, BS; Nowak, BJ; Plunkett, W; Rodriguez, CO, 1998
)
" Plasma and cellular pharmacokinetic measurements were conducted during the first 5 days."( Evaluation of the combination of nelarabine and fludarabine in leukemias: clinical response, pharmacokinetics, and pharmacodynamics in leukemia cells.
Ayres, M; Du, M; Gandhi, V; Hodge, JP; Keating, MJ; O'Brien, S; Plunkett, W; Ramakrishna, P; Rodriguez, CO; Rosner, GL; Weller, S, 2001
)
" The present observations suggest that reduction of the pharmacokinetic parameters may lead to drug accumulation in the regenerating-damaged liver with an attendant possible increase in toxic effects."( Pharmacokinetics of diclofenac in rats intoxicated with CCL4, and in the regenerating liver.
Castañeda-Hernández, G; Favari, L; Muriel, P; Reyes-Gordillo, K, 2007
)

Compound-Compound Interactions

ExcerptReference
"We present a new design for a fluorescence microspectrophotometer for use in kinetic crystallography in combination with x-ray diffraction experiments."( A newly designed microspectrofluorometer for kinetic studies on protein crystals in combination with x-ray diffraction.
Goody, RS; Klink, BU; Scheidig, AJ, 2006
)

Bioavailability

ExcerptReference
"The phosphorylation of insulin-like growth factor binding protein-I (IGFBP-1) alters its binding affinity for insulin-like growth factor I (IGF-I) and thus regulates the bioavailability of IGF-I for binding to the IGF-I receptor."( Characterization of insulin-like growth factor binding protein-1 kinases from human hepatoma cells.
Ankrapp, DP; Clemmons, DR; Jones, JI, 1996
)
" Oral bioavailability of BCX-34 in rats is 76%."( In vivo and in vitro pharmacologic activity of the purine nucleoside phosphorylase inhibitor BCX-34: the role of GTP and dGTP.
Bantia, S; Johnson, HG; Montgomery, JA; Walsh, GM, 1996
)
" BCX-1777 has excellent oral bioavailability (63%) in mice."( Purine nucleoside phosphorylase inhibitor BCX-1777 (Immucillin-H)--a novel potent and orally active immunosuppressive agent.
Ananth, SL; Bantia, S; Horn, LL; Hutchison, TL; Kilpatrick, JM; Miller, PJ; Montgomery, JA; Morris, PE; Parker, CD; Sandhu, JS, 2001
)
" The results show that liver damage and regeneration increases the bioavailability by decreasing elimination."( Pharmacokinetics of diclofenac in rats intoxicated with CCL4, and in the regenerating liver.
Castañeda-Hernández, G; Favari, L; Muriel, P; Reyes-Gordillo, K, 2007
)
" We propose that nucleo-mitochondrial translocation of proteins is more widespread than previously anticipated providing additional means to control protein bioavailability as well as cellular communication between both compartments."( NOA1, a novel ClpXP substrate, takes an unexpected nuclear detour prior to mitochondrial import.
Al-Furoukh, N; Baker, TA; Braun, T; Kardon, JR; Krüger, M; Szibor, M, 2014
)

Dosage Studied

ExcerptReference
" This view is supported by the following facts: (a) mersalyl acted with a similar dose-response curve upon an intact as well as a detergent-dispersed cyclase preparation while no effect was observed upon a solubilized Mg2+-ATPase preparation; (b) a covalent p-chloromercuribenzoate-Sephadex preparation (but not its supernatant) inhibited the cyclase from intact membranes."( Adenylate cyclase from rat-liver plasma membrane: inhibition by mersalyl and other mercurial derivatives.
Hanoune, J; Mavier, P, 1975
)
" The dose-response curve for ATP is then more than half-maximal at 1 mM and the ranking of the other nucleotides relative to ATP is the same as without predigestion."( Potentiation of postjunctional cholinergic sensitivity of rat diaphragm muscle by high-energy-phosphate adenine nucleotides.
Ewald, DA, 1976
)
" Dose-response curves of these drugs fitted the theoretical dose-response relations, but the curves of ATP and GTP were not significantly altered by propranolol."( Nature of catecholamine-like actions of ATP and other energy rich nucleotides on the bullfrog atrial muscle.
Goto, M; Tsuda, Y; Yatani, A, 1978
)
" In contrast, the dose-response effect of enzyme activity to parathyroid hormone was the same in the control preparations, and that of the pseudohypoparathyroidism kidney, at a saturating concentration of ATP."( Altered activity of the nucleotide regulatory site in the parathyroid hormone-sensitive adenylate cyclase from the renal cortex of a patient with pseudohypoparathyroidism.
Burch, WM; Drezner, MK, 1978
)
" Gpp(NH)p also shifted agonist dose-response curves for stimulation of adenylate cyclase, but to the left."( Regulation of beta-adrenergic receptors by guanyl-5'-yl imidodiphosphate and other purine nucleotides.
Caron, MG; Lefkowitz, RJ; Mullikin, D, 1976
)
" Gpp(NH)p dose-response curves for activation of adenylate cyclase and inhibition of (3H)GTP binding were superimposable."( Guanosine triphosphate binding sites in solubilized myocardium. Relation to adenylate cyclase activity.
Lefkowitz, RJ, 1975
)
" However, the isoproterenol dose-response curves for the beta 2AR were shifted to the left, compared with those for the beta 1AR (EC50 of 52."( Beta 1- and beta 2-adrenergic receptors display subtype-selective coupling to Gs.
Green, SA; Holt, BD; Liggett, SB, 1992
)
"05, Fisher PLSD multiple comparison test) 6 hr and 24 hr after dosing of C57BL/6J mice, but as expected the effect of TCDD was not as conspicuous as that found in the plasma membrane."( TCDD causes stimulation of c-ras expression in the hepatic plasma membranes in vivo and in vitro.
Bombick, DW; Jankun, J; Matsumura, F; Olsen, H; Tullis, K, 1992
)
" The minimal effective dosage required to prevent mortality from RCMV infection was a single dose of HPMPC at 2 mg/kg of body weight compared with DHPG therapy twice daily at 20 mg/kg/day for 5 days."( Comparative activity of (S)-1-(3-hydroxy-2-phosphonylmethoxypropyl)cytosine and 9-(1,3-dihydroxy-2-propoxymethyl)guanine against rat cytomegalovirus infection in vitro and in vivo.
Bruggeman, CA; de Clercq, E; Stals, FS, 1991
)
" 200 microM guanosine triphosphate (GTP) produced a decrease of 50% in L-[3H]glutamate binding activity and competition experiments produced an affinity shift to the right of the glutamate dose-response curve."( Characterization of L-[3H]glutamate binding sites in bovine brain coated vesicles.
Cubero, A; González-Calero, G; Martín, M, 1991
)
" Preincubation of contracted artery rings with GTP (100 microM) or guanosine (100 microM) before eliciting relaxations with nitrovasodilators significantly shifted the dose-response curves of nitrocompounds to the left and augmented the increases in cyclic GMP."( Modification of nitrovasodilator effects on vascular smooth muscle by exogenous GTP and guanosine.
Laustiola, KE; Manninen, V; Metsä-Ketelä, T; Pörsti, I; Vapaatalo, H; Vuorinen, P, 1991
)
" In vivo, the elevation of the SAR1 dosage suppresses temperature sensitivity of the sec12 mutant."( Reconstitution of GTP-binding Sar1 protein function in ER to Golgi transport.
Nakano, A; Nishikawa, S; Oka, T, 1991
)
" Through dosage escalation, correlations between plasma levels, toxicity (i."( Novel pharmacological strategies in the treatment of life-threatening cytomegalovirus infections. Clinical experience with continuous infusion 9-(1,3-dihydroxy-2-propoxymethyl) guanine.
Connell, J; Markiewicz, MA; Sommadossi, JP; Whitley, RJ, 1990
)
" In addition, the similarity of the dose-response curves for the bradykinin-mediated increase in Ca2+, PGE2, and cAMP (half-maximal stimulation of 12, 11, and 13 nM, respectively) and the ability of the B2-antagonist (B4307) to block each of these effects of bradykinin suggest that all three effects are mediated by the same bradykinin (B2) receptor."( Effects of kinins on cultured arterial smooth muscle.
Breckon, R; Dixon, BS; Fortune, J; Linas, SL; Marzec-Calvert, R; Stewart, JM; Vavrek, RJ, 1990
)
" Addition of GTP resulted in a rightward shift in the glutamate dose-response curve and a decrease in the maximum level of stimulation."( Guanine nucleotide modulation of [3H]TCP binding to the NMDA receptor complex.
Compton, RP; Hood, WF; Monahan, JB; Thomas, JW, 1990
)
" We assessed the possible role of each of these components with age by measuring forskolin dose-response stimulation of adenylate cyclase activity in the presence and absence of guanosine 5'-O-(2-thiodiphosphate) (GDP-beta S) and beta,gamma-imidoguanine 5'-triphosphate (Gpp(NH)p) in myocardial membranes from F-344 rats of 3, 12, and 24 months of age."( Forskolin activation of adenylate cyclase in rat myocardium with age: effects of guanine nucleotide analogs.
Scarpace, PJ, 1990
)
" Dose-response curves revealed that PHA-induced production of inositol phosphates correlated closely with PKC activities, whereas only a partial correlation between these parameters was observed with GTP[S]."( A method for measuring protein kinase C activity in permeabilized T lymphocytes by using peptide substrates. Evidence for multiple pathways of kinase activation.
Alexander, DR; Cantrell, DA; Crumpton, MJ; Graves, JD; Lucas, SC, 1990
)
"The natriuretic agent amiloride induces a shift of the dose-response curve of particulate guanylate cyclase to atrial natriuretic factor (ANF) to the left."( Amiloride increases the sensitivity of particulate guanylate cyclase to atrial natriuretic factor.
Gerzer, R; Heim, JM; Ivanova, K, 1988
)
" The dose-response curves of the strips from both strains for alpha-adrenoceptor stimulation with NA determined after pretreatment with CTX were comparable to those determined in the absence of timolol."( Role of stimulatory GTP-binding protein (Gs) in reduced beta-adrenoceptor coupling in the femoral artery of spontaneously hypertensive rats.
Asano, M; Masuzawa, K; Matsuda, T, 1988
)
" However, the inhibitory dose-response curves of adenylate cyclase to R-PIA, nicotinic acid, GTP, guanylylimidodiphosphate, and guanosine 5'-O-(3-thiotriphosphate) were unaltered by adrenalectomy, indicating that the inhibitory function of Gi is unimpaired by adrenalectomy."( Role of adenosine 3',5'-monophosphate and the Ri-receptor Gi-coupled adenylate cyclase inhibitory pathway in the mechanism whereby adrenalectomy increases the adenosine antilipolytic effect in rat fat cells.
de Mazancourt, P; Giot, J; Giudicelli, Y; Lacasa, D, 1989
)
" In the presence of ADP, the dose-response function for ATP exhibits an apparent parallel displacement to the right suggesting that this antagonism may occur via competition at the ATP receptor."( ATP-sensitive chemoreceptors: antagonism by other nucleotides and the potential implications of ectonucleotidase activity.
Carr, WE; Gleeson, RA; Trapido-Rosenthal, HG, 1989
)
" The dose-response curve is biphasic, with a peak at 10(-7) M calcium."( The biphasic calcium dose-response curve for parathyroid hormone secretion in electropermeabilized adult bovine parathyroid cells.
Ehrenstein, G; Pocotte, SL, 1989
)
" A dose-response curve for GTP gamma S indicated a concentration for half-maximal stimulation of approximately 8 microM."( GTP analogues stimulate inositol trisphosphate formation transiently in Dictyostelium.
Europe-Finner, GN; Newell, PC, 1987
)
" Ethanol also shifted the dose-response curve for stimulation of the enzyme by isoproterenol to the right."( Effects of ethanol in vitro on the beta adrenergic receptor-coupled adenylate cyclase system.
Bode, DC; Molinoff, PB, 1988
)
" Computer-assisted analysis of dose-response curves resulting from the inhibition of the binding of [125I]iodopindolol by the beta-1 and beta-2 selective compounds ICI 89,406 and ICI 118,551 revealed that approximately one-third of the beta adrenergic receptors on these cells were beta-1 receptors."( Selective regulation of beta-1 and beta-2 adrenergic receptors by atypical agonists.
Barrett, DA; Molinoff, PB; Neve, KA, 1985
)
" A dose of 5 mg/kg of AMPH, but not 1 mg/kg of AMPH, caused a 2-fold shift to the right in the dose-response curve for DA in stimulating AC activity when compared with saline controls."( Desensitization of rat striatal dopamine-stimulated adenylate cyclase after acute amphetamine administration.
Barnett, JV; Kuczenski, R, 1986
)
" These questions concern appropriate routes of administration for antiviral compounds, optimal dosage regimens, risks of long-term prophylaxis, and the emergence of resistant organisms."( Antiviral chemotherapy and chemoprophylaxis.
Dolin, R, 1985
)
" In contrast, dose-response curves for GTP-stimulation of basal and isoproterenol-stimulated adenylate cyclase display higher maximal responses in fasted rats under conditions restraining (2 mM Mg2+) but not promoting (10 mM Mg2+) the dissociation of Ns."( Fasting increases fat cell adenylate cyclase sensitivity to stimulatory agonists through enhanced ability of the stimulatory regulatory component Ns to dissociate.
Agli, B; Giudicelli, Y; Lacasa, D, 1986
)
" The dose-response profiles for the effects of the beta gamma T complex on the rate and extent of the GTP gamma S-stimulated fluorescence enhancement of alpha T have also been examined."( The intrinsic fluorescence of the alpha subunit of transducin. Measurement of receptor-dependent guanine nucleotide exchange.
Cerione, RA; Phillips, WJ, 1988
)
" Millimolar Ca2+ alone was sufficient to stimulate [3H]InsP3 production; however, in the presence of guanosine 5'-[gamma-thio]triphosphate, the Ca2+ dose-response curve was shifted to submicromolar concentrations."( Guanine nucleotide regulation of phospholipase C activity in permeabilized rabbit neutrophils. Inhibition by pertussis toxin and sensitization to submicromolar calcium concentrations.
Bradford, PG; Rubin, RP, 1986
)
" Mg2+ dose-response curves also reinforced the differences in the Ca2+/CaM requirement for Gpp(NH)p- and morphine-induced inhibition."( Ca2+/calmodulin distinguishes between guanyl-5'-yl-imidodiphosphate- and opiate-mediated inhibition of rat striatal adenylate cyclase.
Ahlijanian, MK; Cooper, DM; Halford, MK, 1987
)
" Dose-response curves showed that apparent LH affinity was not modified by the presence of GMP-P(NH)P."( Properties of an LH-stimulable adenylate cyclase in plasma membranes of interstitial cells from rat testis.
de la Llosa-Hermier, MP; Hermier, C; Saltarelli, D, 1986
)
" Dose-response curves for GDP, GTP, and guanyl-5'-yl imidodiphosphate showed them to be equipotent."( Guanine nucleotide regulation of a mammalian myocardial muscarinic receptor system. Evidence for homo- and heterotropic cooperativity in ligand binding analyzed by computer-assisted curve fitting.
Birnbaumer, L; Entman, ML; Mattera, R; Pitts, BJ, 1985
)
" In the presence of spiroperidol, the Hill coefficients determined from dose-response curves of the inhibition of the binding of [alpha-3H]flupenthixol by antagonists or by agonists in the presence of GTP suggest that the binding reaction obeys simple Michaelis-Menten kinetics for a single class of binding sites."( Assay of dopamine receptors with [alpha-3H]flupenthixol.
Huff, RM; Molinoff, PB, 1985
)
" Dose-response experiments indicated that the GTP pool was significantly reduced (65% of control) at 25 microM ribavirin, and increasing concentrations of the drug caused only a small further reduction in the GTP pool (5-10% at 100 microM)."( Mode of action of ribavirin: effect of nucleotide pool alterations on influenza virus ribonucleoprotein synthesis.
Gilbert, BE; Knight, V; Noall, MW; Wray, SK, 1985
)
" However, the dose-response curve for the GppNHp-dependent increase in [3H]forskolin binding sites is shifted to lower concentrations in the presence of prostaglandin E1."( Regulation of [3H]forskolin binding to human platelet membranes by GppNHp, NaF, and prostaglandin E1.
Nelson, CA; Seamon, KB, 1985
)
"In view of controversial findings regarding the mechanism for the increased intracellular hepatic cyclic 3':5' adenosine monophosphate levels in diabetic rats, we studied the dose-response relationship of the adenylate cyclase to glucagon stimulation in severely diabetic and in diabetic, insulin-treated rats."( Increased dose-response relationship of liver plasma membrane adenylate cyclase to glucagon stimulation in diabetic rats. A possible role of the guanyl nucleotide-binding regulatory protein.
Allgayer, H; Bachmann, W; Hepp, KD, 1982
)
" This technique has been used to generate dose-response curves describing the effects of mycophenolic acid and pyrazofurin on individual colonies of Chinese hamster ovary cells."( Ultrasensitive assay for ribonucleoside triphosphates in 50-1000 cells. Application to studies with pyrazofurin and mycophenolic acid.
Henderson, JF; Moyer, JD, 1983
)
" The dose-response curves for isoprenaline competition in binding of [125I]iodohydroxybenzylpindolol by dividing cells showed that the EC50 (effective concentration for half maximum activity) value for isoprenaline was higher in the presence of p[NH]ppG."( Characteristics of the beta-adrenergic adenylate cyclase system of developing rabbit bone-marrow erythroblasts.
Arnstein, HR; Setchenska, MS, 1983
)
" Mice dosed with EHNA (100 mg/kg) once daily for 7 days showed the same ADA recovery rate as mice dosed only once."( Pharmacokinetics of inhibition of adenosine deaminase by erythro-9-(2-hydroxy-3-nonyl)adenine in CBA mice.
Lambe, CU; Nelson, DJ, 1982
)
" The GTP effect was not hormone-receptor mediated, since no shift was seen of the epinephrine dose-response curve toward higher sensitivity."( Essential role of GTP in epinephrine stimulation of human fat cell adenylate cyclase.
Gregerman, RI; Katz, MS; Partilla, JS; Piñeyro, MA, 1981
)
" The dose-response curves for epinephrine alone, GMP-PNP alone, or for the combination of epinephrine and GMP-PNP are similar for the newborn and adult heart preparations."( Adenylyl cyclase responsiveness to guanyl nucleotides in the developing rat heart.
Carr, L; Clark, CM; Clark, JB; Vinicor, F, 1980
)
"To understand how phosphorylation of eukaryotic translation initiation factor (eIF)-2 alpha in Saccharomyces cerevisiae stimulates GCN4 mRNA translation while at the same time inhibiting general translation initiation, we examined the effects of altering the gene dosage of initiator tRNA(Met), eIF-2, and the guanine nucleotide exchange factor for eIF-2, eIF-2B."( Modulation of tRNA(iMet), eIF-2, and eIF-2B expression shows that GCN4 translation is inversely coupled to the level of eIF-2.GTP.Met-tRNA(iMet) ternary complexes.
Aström, S; Byström, AS; Dever, TE; Hinnebusch, AG; Yang, W, 1995
)
" The sigmoidal shape of the dose-response curve indicated cooperativity in binding of UTP and UDP."( Escherichia coli UMP-kinase, a member of the aspartokinase family, is a hexamer regulated by guanine nucleotides and UTP.
Bârzu, O; Blondin, C; Danchin, A; Gilles, AM; Krin, E; Sakamoto, H; Serina, L; Sismeiro, O, 1995
)
" The persistence of mycophenolic acid in proliferating cells may account for the effectiveness of once daily dosing against rapidly growing experimental tumors."( Pharmacodynamics of the inhibition of GTP synthesis in vivo by mycophenolic acid.
Franklin, TJ; Morris, WP, 1994
)
" In addition, the p[NH]ppG dose-response curve of the forskolin-stimulated enzyme was biphasic, similar to that observed for other systems."( Characterization of adenylyl cyclase in goldfish brain.
Henley, JM; Kirkham, DM, 1993
)
" The dose-response curves suggest that both receptor types mediate the response."( Platelet-derived growth factor increases the turnover of GTP/GDP on ras in permeabilized fibroblasts.
Nånberg, E; Westermark, B, 1993
)
" The dose-response relationship for the IP3 response of L-Cys and L-Ala in the range from 10 nM to 1 mM is consistent with previous electrophysiological and ligand binding experiments."( Rapid kinetic measurements of second messenger formation in olfactory cilia from channel catfish.
Boekhoff, I; Breer, H; Restrepo, D, 1993
)
" The results demonstrate that BCX-34 inhibits human PNP and T-cell proliferation, is orally bioavailable in rodents, and pharmacologically active in vivo in rodents after oral dosing with no apparent side effects or toxicity."( In vivo and in vitro pharmacologic activity of the purine nucleoside phosphorylase inhibitor BCX-34: the role of GTP and dGTP.
Bantia, S; Johnson, HG; Montgomery, JA; Walsh, GM, 1996
)
" In a dose-response relationship for ATP, adenosine A1 receptor activation shifted the half-maximal inhibition of the KATP channel from 70 to 241 microM."( Modulation of ATP-sensitive K+ channels in rabbit ventricular myocytes by adenosine A1 receptor activation.
Earm, YE; Han, J; Ho, W; Kim, E, 1997
)
" Dose-response curves to increasing concentrations of Ca2+ were obtained and the ability of 100 nmol/L endothelin-1 (ET-1) or 10 micromol/L norepinephrine (NE) in the presence of 10 micromol/L GTP to enhance tension in response to low Ca2+ (pCa6."( Calcium sensitivity and agonist-induced calcium sensitization in small arteries of young and adult spontaneously hypertensive rats.
Heagerty, AM; Ohanian, J; Shaw, LM, 1997
)
" PDBu did not affect the dose-response relation of NE in Mn-loaded preparations."( Effects of phorbol-12,13-dibutyrate and protein kinase C inhibitors on Mn(2+)-dependent norepinephrine-induced contractions involving increase in Mn2+ sensitivity in Ca(2+)-depleted vas deferens of the guinea pig.
Gomi, Y; Tsunobuchi-Ushijima, H, 1997
)
" When co-expressed in Xenopus oocytes with a G-protein-coupled receptor and a G-protein-coupled inwardly rectifying K+ channel (GIRK1/2), RGS8 accelerated not only the turning off but also the turning on of the GIRK1/2 current upon receptor stimulation, without affecting the dose-response relationship."( RGS8 accelerates G-protein-mediated modulation of K+ currents.
Asano, T; Kubo, Y; Miyatani, Y; Nakata, H; Saitoh, O, 1997
)
"6 was calculated for galparan from a dose-response curve and Ki of 19."( Differential regulation of GTPase activity by mastoparan and galparan.
Langel, U; Pooga, M; Rezaei, K; Saar, K; Zorko, M, 1998
)
" In this study, both LMF and Zn-alpha2-glycoprotein have been shown to stimulate glycerol release from isolated murine epididymal adipocytes with a comparable dose-response profile."( Biological evaluation of a lipid-mobilizing factor isolated from the urine of cancer patients.
Barber, MD; Hirai, K; Hussey, HJ; Price, SA; Tisdale, MJ, 1998
)
" The comparison of kinetic constants estimated from dose-response data for GTP and glucagon suggests that prenatal chronic irradiation prompted (i) the decrease in rate of GTP hydrolysis on Gs-protein; (ii) the reduction of glucagon potency to accelerate the exchange GDP for GTP on Gs-protein."( [Effect of prenatal gamma-irradiation on functional properties of rat liver adenylate cyclase].
Chubanov, VS; Konoplia, EF; Rogov, IuI; Sholukh, MV,
)
" Hence, dosing regimens that achieve high plasma levels of ara-G during therapy may increase cellular levels of ara-GTP."( Pharmacological and biochemical strategies to increase the accumulation of arabinofuranosylguanine triphosphatein primary human leukemia cells.
Estey, E; Gandhi, V; Keating, MJ; Legha, JK; Rodriguez, CO, 1997
)
" Investigation of other dosing schedules may limit neurotoxicity."( Complete hematologic and cytogenetic response to 2-amino-9-beta-D-arabinosyl-6-methoxy-9H-guanine in a patient with chronic myelogenous leukemia in T-cell blastic phase: a case report and review of the literature.
Aguayo, A; Beran, M; Cortes, JE; Gandhi, V; Kantarjian, HM; Keating, MJ; Kurtzberg, J; Plunkett, W, 1999
)
" Rnd1 inhibited GTPgammaS-induced tension without shifting the dose-response curves to GTPgammaS."( The Rho-related protein Rnd1 inhibits Ca2+ sensitization of rat smooth muscle.
Cario-Toumaniantz, C; Chardin, P; Loirand, G; Pacaud, P, 1999
)
" Here I present genetic and morphological evidence that a 2-fold higher dosage of the division gene zipA suppresses thermosensitivity of the ftsZ84 mutant by stabilizing the labile FtsZ84 ring structure in vivo."( ZipA is a MAP-Tau homolog and is essential for structural integrity of the cytokinetic FtsZ ring during bacterial cell division.
RayChaudhuri, D, 1999
)
" When the amount of EF-2 exceeded that of ribosomes sordarin inhibited the GTPase activity following an inverted bell-shaped dose-response curve, whereas when EF-2 and ribosomes were in equimolar concentrations sordarin yielded a typical sigmoidal dose-dependent inhibition."( Sordarin inhibits fungal protein synthesis by blocking translocation differently to fusidic acid.
Domínguez, JM; Gómez-Lorenzo, MG; Martín, JJ, 1999
)
" This effect was intensity-dependent (the sigmoidal dose-response curve was characterized by an EI(50) of 662+/-69 microT and a maximal increase of 321+/-13% of the control K(d)), reversible, temperature-dependent and specific to the 5-HT(1B) receptors."( Magnetic field desensitizes 5-HT(1B) receptor in brain: pharmacological and functional studies.
Bailly, JM; Deschamps, F; Fillion, G; Grimaldi, B; Kochanek, M; Lambrozo, J; Massot, O, 2000
)
" The composite rate, however, becomes an amplifying factor in any dose-response relationship."( The ligand-receptor-G-protein ternary complex as a GTP-synthase. steady-state proton pumping and dose-response relationships for beta -adrenoceptors.
Broadley, KJ; Davies, RH; Nederkoorn, PH; Timmerman, H; Timms, D, 2000
)
" FMRFamide and FLRFamide had similar dose-response curve patterns with thresholds at 10(-9) mol l(-1) but FLRFamide was more potent than FMRFamide."( Excitation evoked by FMRFamide and FLRFamide in the heart of Buccinum undatum and evidence for inositol 1,4,5-trisphosphate as an RF-tetrapeptide second messenger.
Ellis, AM; Huddart, H, 2000
)
"2 ppm lead acetate) at a dosage known to impair learning in children, showed reduced learning and less intense calexcitin staining whether the CS and US were paired or given randomly."( Pavlovian conditioning-specific increases of the Ca2+- and GTP-binding protein, calexcitin in identified Hermissenda visual cells.
Alkon, DL; Buck, D; Child, FM; Epstein, HT; Kuzirian, AM; Nelson, T, 2001
)
" Such an approach has increasingly been recognized to impose experimental limitations related to specificity, dosage and/or clonal variation."( Cell type-specific functions of Rho GTPases revealed by gene targeting in mice.
Wang, L; Zheng, Y, 2007
)
"The triplicate intracerebroventricular (icv) application of the diabetogenic compound streptozotocin (STZ) in low dosage was used in 1-year-old male Wistar rats to induce a damage of the neuronal insulin signal transduction (IST) system and to investigate the activities of hexokinase (HK), phosphofructokinase (PFK), glyceraldehyde-3-phosphate dehydrogenase (GDH), pyruvate kinase (PK), lactate dehydrogenase (LDH) and alpha-ketoglutarate dehydrogenase (alpha-KGDH) in frontoparietotemporal brain cortex (ct) and hippocampus (h) 9 weeks after damage."( Long-term abnormalities in brain glucose/energy metabolism after inhibition of the neuronal insulin receptor: implication of tau-protein.
Hoyer, S; Lannert, H, 2007
)
" These genes act as dosage suppressors of a synthetic growth defect caused by some mutations in the SUP45 and SUP35 genes encoding eRF1 and eRF3, respectively."( Elongation factor eEF1B modulates functions of the release factors eRF1 and eRF3 and the efficiency of translation termination in yeast.
Fominov, GV; Smirnov, VN; Sokolova, EE; Ter-Avanesyan, MD; Valouev, IA, 2009
)
" To better understand the contributions of different signaling pathways, the expression and role of Ras activation was evaluated after oral dosing of mice with APAP (400-500 mg/kg)."( Farnesyltransferase inhibitors reduce Ras activation and ameliorate acetaminophen-induced liver injury in mice.
Nandi, D; Saha, B, 2009
)
" αT*(S43N) activated the cGMP phosphodiesterase (PDE) with a dose-response similar to wild-type αT*."( A dominant-negative Galpha mutant that traps a stable rhodopsin-Galpha-GTP-betagamma complex.
Cerione, RA; Ramachandran, S, 2011
)
" For each of the four modes, spatial distributions and dose-response curves of active kinases (i."( Spatial distribution and dose-response relationship for different operation modes in a reaction-diffusion model of the MAPK cascade.
Liu, Y; Yi, M; Zhao, Q, 2011
)
" Identification of several gene dosage suppressors revealed that TAT1, encoding an amino acid transporter, is a robust suppressor of the amd1 aah1 growth defect."( Genetic investigation of purine nucleotide imbalance in Saccharomyces cerevisiae.
Almyre, C; Ceschin, J; Daignan-Fornier, B; Pinson, B; Saint-Marc, C, 2020
)
" To investigate the relationship between phthalate exposure during the two periods and liver enzyme levels (ALT, AST, γ-GTP) in adolescence, differences between groups and the dose-response relationship were analyzed."( Prospective association between phthalate exposure in childhood and liver function in adolescence: the Ewha Birth and Growth Cohort Study.
Ha, EH; Han, H; Hong, YS; Lee, HA; Lee, S; Park, B; Park, H, 2023
)
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Roles (3)

RoleDescription
Escherichia coli metaboliteAny bacterial metabolite produced during a metabolic reaction in Escherichia coli.
mouse metaboliteAny mammalian metabolite produced during a metabolic reaction in a mouse (Mus musculus).
uncoupling protein inhibitorAny inhibitor that acts on uncoupling protein.
[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 (2)

ClassDescription
guanosine 5'-phosphate
purine ribonucleoside 5'-triphosphate
[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 (144)

PathwayProteinsCompounds
Transport of small molecules39295
Aquaporin-mediated transport1811
Vasopressin regulates renal water homeostasis via Aquaporins99
Vesicle-mediated transport33316
Membrane Trafficking30814
Intra-Golgi and retrograde Golgi-to-ER traffic7710
Intra-Golgi traffic245
Clathrin derived vesicle budding375
Translocation of SLC2A4 (GLUT4) to the plasma membrane459
Rab regulation of trafficking588
TBC/RABGAPs236
Organelle biogenesis and maintenance23216
Cilium Assembly1668
Cargo trafficking to the periciliary membrane406
BBSome-mediated cargo-targeting to cilium202
Trafficking of myristoylated proteins to the cilium32
CDO in myogenesis103
Metabolism14961108
Metabolism of lipids500463
Phospholipid metabolism12242
PI Metabolism4911
Synthesis of PIPs at the Golgi membrane85
Synthesis of PIPs at the plasma membrane275
Amino acid synthesis and interconversion (transamination)2343
Histidine, lysine, phenylalanine, tyrosine, proline and tryptophan catabolism4485
Rho GTPase cycle46
Inhibition of adenylate cyclase pathway14
Influenza Infection1295
8-oxo-(d)GTP detoxification I010
Immune System91482
Adaptive Immune System26424
Class I MHC mediated antigen processing & presentation7615
Antigen Presentation: Folding, assembly and peptide loading of class I MHC147
MHC class II antigen presentation247
ppGpp metabolism011
superpathway of adenosine nucleotides de novo biosynthesis I614
superpathway of purine nucleotides de novo biosynthesis I1232
superpathway of pyrimidine deoxyribonucleoside salvage619
guanine and guanosine salvage III010
purine nucleosides salvage II (plant)419
GDP-mannose biosynthesis48
guanosine ribonucleotides de novo biosynthesis215
ppGpp biosynthesis011
S-adenosyl-L-methionine cycle II427
GDP-glucose biosynthesis09
pyrimidine deoxyribonucleosides salvage615
flavin biosynthesis I (bacteria and plants)521
adenosine nucleotides degradation I327
GDP-L-fucose biosynthesis II (from L-fucose)08
adenosine ribonucleotides de novo biosynthesis311
superpathway of purines degradation in plants745
pyruvate fermentation to (S)-lactate013
oxidized GTP and dGTP detoxification18
homogalacturonan biosynthesis015
superpathway of tetrahydrofolate biosynthesis1029
L-ascorbate biosynthesis I (L-galactose pathway)918
pyrimidine salvage pathway311
tetrahydrofolate biosynthesis II1232
6-hydroxymethyl-dihydropterin diphosphate biosynthesis I417
purine nucleotides degradation I (plants)334
superpathway of anaerobic sucrose degradation3360
phytol salvage pathway18
Alanine,Aspartic acid and Asparagine metabolism ( Alanine,Aspartic acid and Asparagine metabolism )2237
Citrate cycle ( Citrate cycle )2129
CoA + GTP + Succinic acid = Succinyl-CoA + GDP + Orthophosphate ( Citrate cycle )26
GTP + Oxaloacetic acid = GDP + Phosphoenol-pyruvic acid + CO2 ( Citrate cycle )25
ATP + GDP = ADP + GTP ( Purine nucleotides and Nucleosides metabolism )74
Folate metabolism ( Folate metabolism )2039
Purine nucleotides and Nucleosides metabolism ( Purine nucleotides and Nucleosides metabolism )10577
B cell receptor signaling pathway ( B cell receptor signaling )344
T cell receptor signaling (PLC gamma, PKC, Ras and ERK cascade) ( CD4 T cell receptor signaling (ERK cascade) )214
FGF signaling pathway (D. melanogaster tracheal cells) ( FGF signaling pathway (D. melanogaster) )112
FGF8 signaling pathway(Mouse) ( FGF8 signaling (Mouse) )112
FGF8 signaling pathway(Xenopus) ( FGF8 signaling (Xenopus) )112
FGF signaling pathway (C. elegans) ( FGF signaling pathway (C. elegans) )102
FGF signaling pathway (D. melanogaster) ( FGF signaling pathway (D. melanogaster) )142
Heterotrimeric GPCR signaling pathway (through Adenosine G alpha s) ( GPCR Adenosine A2A receptor signaling pathway )164
B-Raf activation signaling ( GPCR signaling (G alpha s, PKA and ERK) )72
Rap1 activation signaling (through cAMP, PKA, Cbl and C3G) ( GPCR signaling (G alpha s, PKA and ERK) )62
PKA activation signaling ( GPCR Adenosine A2A receptor signaling pathway )43
Heterotrimeric GPCR signaling pathway (through Dopamine and G alpha s) ( GPCR Dopamine D1like receptor signaling pathway )134
G alpha s GDP-GTP exchange signaling ( GPCR Dopamine D1like receptor signaling pathway )42
PKA activation signaling ( GPCR Dopamine D1like receptor signaling pathway )43
Heterotrimeric GPCR signaling pathway (through glutamate, G alpha q and PLC beta) ( GPCR GroupI metabotropic glutamate receptor signaling pathway )104
G alpha q GDP-GTP exchange signaling ( GPCR GroupI metabotropic glutamate receptor signaling pathway )42
PLC beta signaling ( GPCR GroupI metabotropic glutamate receptor signaling pathway )33
Heterotrimeric GTP-binding protein coupled receptor signaling pathway (through G alpha i, adenylate cyclase and cAMP) ( GPCR signaling (G alpha i) )82
G alpha i GDP-GTP exchange signaling ( GPCR signaling (pertussis toxin) )42
Negative regulation of (G alpha i GDP-GTP exchange signaling) ( GPCR signaling (G alpha i) )22
Negative regulation of (Binding of G alpha i-GTP and adenylate cyclase) ( GPCR signaling (pertussis toxin) )21
Adenylate cyclase activation signaling ( GPCR signaling (pertussis toxin) )21
Adenylate cyclase inactivation signaling ( GPCR signaling (pertussis toxin) )21
Heterotrimeric GPCR signaling pathway (through G alpha q, PLC beta and ERK cascade) ( GPCR signaling (G alpha q) )124
Negative regulation of heterotrimeric GPCR signaling pathway (through G alpha q and PLC beta) ( GPCR signaling (G alpha q) )22
G alpha s GDP-GTP exchange signaling ( GPCR signaling (G alpha q) )42
PLC beta signaling ( GPCR signaling (G alpha q) )33
Heterotrimeric GPCR signaling pathway (through G alpha s ACs Epac BRaf and ERKcascade) ( GPCR signaling (G alpha s, Epac and ERK) )134
Negative regulation of heterotrimeric GPCR signaling pathway (through G alpha s) ( GPCR signaling (cholera toxin) )21
G alpha s GDP-GTP exchange signaling ( GPCR signaling (cholera toxin) )42
Negative regulation of (G alpha GDP-GTP exchange signaling) ( GPCR signaling (G alpha s, PKA and ERK) )22
B-Raf activation signaling ( GPCR signaling (G alpha s, Epac and ERK) )33
Rap1 activation signaling (through cAMP and Epac) ( GPCR signaling (G alpha s, Epac and ERK) )23
Heterotrimeric GPCR signaling pathway (through_G alpha s_ACs_PKA_BRaf_and_ERKcascade)(canonical) ( GPCR signaling (G alpha s, PKA and ERK) )184
PKA activation signaling ( GPCR signaling (G alpha s, PKA and ERK) )43
Heterotrimeric GTP-binding protein coupled receptor signaling pathway (through_G_alpha_s,_cholera_toxin,_adenylate_cyclase_and_cAMP) ( GPCR signaling (cholera toxin) )104
PKA activation signaling ( GPCR signaling (cholera toxin) )43
Negative regulation of (G alpha s GDP-GTP exchange signaling) ( GPCR signaling (cholera toxin) )22
Heterotrimeric GPCR signaling pathway (through G alpha i and pertussis toxin) ( GPCR signaling (pertussis toxin) )92
Negative regulation of (G alpha i GDP-GTP exchange signaling) ( GPCR signaling (pertussis toxin) )22
HGF signaling pathway ( HGF signaling pathway )222
IGF1 signaling pathway ( IGF1 signaling pathway )182
Integrin signaling pathway ( Integrin signaling pathway )282
NGF signaling pathway ( NGF signaling pathway )123
Insulin receptor signaling ( Insulin receptor signaling )343
AKT(PKB)-TOR signaling ( Insulin receptor signaling (D. melanogaster) )132
Pyrimidine synthesis and deprivation pathway (COVID-19 Disease Maps)1329
Oxidative stress and redox pathway019
MAPK pathway in congenital thyroid cancer22
SARS-CoV-1 Infection6019
SARS-CoV-2 Infection7720
RAS and bradykinin pathways in COVID-19113
8-oxo-(d)GTP detoxification II012
Mycobacterium tuberculosis biological processes3962
Sulfur compound metabolism1929
Sulfate assimilation712
GDP-arabinose biosynthesis08
purine nucleotide metabolism (phosphotransfer and nucleotide modification)023
purine nucleotides de novo biosynthesis I039
superpathway of histidine, purine, and pyrimidine biosynthesis064
purine nucleotides de novo biosynthesis II033
tetrahydrofolate biosynthesis I028
ascorbate biosynthesis I (L-galactose pathway)017
salvage pathways of purine nucleosides I027
Glucose repression04
RTK/Ras/MAPK - LET-23, EGL-15 independent01
Semaphorin interactions06
Membrane trafficking05
Biochemical pathways: part I0466
Ras signaling05
Krebs cycle disorders1214
Synaptic signaling pathways associated with autism spectrum disorder04
Interferon type I signaling pathways02
TCA cycle (aka Krebs or citric acid cycle)024
DINR-mediated activation165
RAC1 signalling93

Protein Targets (9)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
phosphopantetheinyl transferaseBacillus subtilisPotency14.12540.141337.9142100.0000AID1490
TDP1 proteinHomo sapiens (human)Potency5.31130.000811.382244.6684AID686978; AID686979
67.9K proteinVaccinia virusPotency28.18380.00018.4406100.0000AID720580
[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)
[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)
Chain A, Uracil PhosphoribosyltransferaseToxoplasma gondiiKd465.0000465.0000465.0000465.0000AID977611
Chain B, Uracil PhosphoribosyltransferaseToxoplasma gondiiKd465.0000465.0000465.0000465.0000AID977611
Chain C, Uracil PhosphoribosyltransferaseToxoplasma gondiiKd465.0000465.0000465.0000465.0000AID977611
2-dehydropantoate 2-reductaseEscherichia coli K-12Kd153.00000.26000.26000.2600AID269136
Ras-related protein Rab-7aHomo sapiens (human)Kd0.36840.02580.21730.8280AID1425594; AID1425595; AID1425596; AID1425607
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Biological Processes (42)

Processvia Protein(s)Taxonomy
pantothenate biosynthetic process2-dehydropantoate 2-reductaseEscherichia coli K-12
pantothenate biosynthetic process2-dehydropantoate 2-reductaseEscherichia coli K-12
autophagosome assemblyRas-related protein Rab-7aHomo sapiens (human)
protein targeting to lysosomeRas-related protein Rab-7aHomo sapiens (human)
endocytosisRas-related protein Rab-7aHomo sapiens (human)
epidermal growth factor catabolic processRas-related protein Rab-7aHomo sapiens (human)
endosome to lysosome transportRas-related protein Rab-7aHomo sapiens (human)
response to bacteriumRas-related protein Rab-7aHomo sapiens (human)
protein transportRas-related protein Rab-7aHomo sapiens (human)
lipid catabolic processRas-related protein Rab-7aHomo sapiens (human)
viral release from host cellRas-related protein Rab-7aHomo sapiens (human)
protein to membrane dockingRas-related protein Rab-7aHomo sapiens (human)
retrograde transport, endosome to GolgiRas-related protein Rab-7aHomo sapiens (human)
early endosome to late endosome transportRas-related protein Rab-7aHomo sapiens (human)
bone resorptionRas-related protein Rab-7aHomo sapiens (human)
positive regulation of protein catabolic processRas-related protein Rab-7aHomo sapiens (human)
intracellular transportRas-related protein Rab-7aHomo sapiens (human)
positive regulation of viral processRas-related protein Rab-7aHomo sapiens (human)
establishment of vesicle localizationRas-related protein Rab-7aHomo sapiens (human)
lipophagyRas-related protein Rab-7aHomo sapiens (human)
phagosome maturationRas-related protein Rab-7aHomo sapiens (human)
phagosome acidificationRas-related protein Rab-7aHomo sapiens (human)
phagosome-lysosome fusionRas-related protein Rab-7aHomo sapiens (human)
endosome to plasma membrane protein transportRas-related protein Rab-7aHomo sapiens (human)
negative regulation of exosomal secretionRas-related protein Rab-7aHomo sapiens (human)
positive regulation of exosomal secretionRas-related protein Rab-7aHomo sapiens (human)
negative regulation of intralumenal vesicle formationRas-related protein Rab-7aHomo sapiens (human)
polysaccharide biosynthetic process4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
carbohydrate metabolic process4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
protein glycosylation4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
protein N-linked glycosylation4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
protein O-linked glycosylation4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
glycosphingolipid biosynthetic process4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
oligosaccharide biosynthetic process4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
positive regulation of neuron projection development4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
neuron differentiation4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
fucosylation4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
N-glycan fucosylation4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
neuronal stem cell division4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
L-fucose catabolic process4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
Lewis x epitope biosynthetic process4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
regulation of leukocyte cell-cell adhesion4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
regulation of leukocyte tethering or rolling4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Molecular Functions (15)

Processvia Protein(s)Taxonomy
2-dehydropantoate 2-reductase activity2-dehydropantoate 2-reductaseEscherichia coli K-12
oxidoreductase activity2-dehydropantoate 2-reductaseEscherichia coli K-12
oxidoreductase activity, acting on the CH-OH group of donors, NAD or NADP as acceptor2-dehydropantoate 2-reductaseEscherichia coli K-12
NADP binding2-dehydropantoate 2-reductaseEscherichia coli K-12
GTPase activityRas-related protein Rab-7aHomo sapiens (human)
G protein activityRas-related protein Rab-7aHomo sapiens (human)
protein bindingRas-related protein Rab-7aHomo sapiens (human)
GTP bindingRas-related protein Rab-7aHomo sapiens (human)
GDP bindingRas-related protein Rab-7aHomo sapiens (human)
small GTPase bindingRas-related protein Rab-7aHomo sapiens (human)
retromer complex bindingRas-related protein Rab-7aHomo sapiens (human)
protein binding4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
fucosyltransferase activity4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase activity4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
protein homodimerization activity4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
alpha-(1->3)-fucosyltransferase activity4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Ceullar Components (25)

Processvia Protein(s)Taxonomy
cytoplasm2-dehydropantoate 2-reductaseEscherichia coli K-12
cytoplasm2-dehydropantoate 2-reductaseEscherichia coli K-12
lysosomeRas-related protein Rab-7aHomo sapiens (human)
late endosomeRas-related protein Rab-7aHomo sapiens (human)
retromer complexRas-related protein Rab-7aHomo sapiens (human)
autophagosome membraneRas-related protein Rab-7aHomo sapiens (human)
mitochondrionRas-related protein Rab-7aHomo sapiens (human)
lysosomeRas-related protein Rab-7aHomo sapiens (human)
lysosomal membraneRas-related protein Rab-7aHomo sapiens (human)
late endosomeRas-related protein Rab-7aHomo sapiens (human)
Golgi apparatusRas-related protein Rab-7aHomo sapiens (human)
lipid dropletRas-related protein Rab-7aHomo sapiens (human)
cytosolRas-related protein Rab-7aHomo sapiens (human)
plasma membraneRas-related protein Rab-7aHomo sapiens (human)
endosome membraneRas-related protein Rab-7aHomo sapiens (human)
secretory granule membraneRas-related protein Rab-7aHomo sapiens (human)
phagocytic vesicle membraneRas-related protein Rab-7aHomo sapiens (human)
synaptic vesicle membraneRas-related protein Rab-7aHomo sapiens (human)
late endosome membraneRas-related protein Rab-7aHomo sapiens (human)
mitochondrial membraneRas-related protein Rab-7aHomo sapiens (human)
melanosome membraneRas-related protein Rab-7aHomo sapiens (human)
phagophore assembly site membraneRas-related protein Rab-7aHomo sapiens (human)
phagocytic vesicleRas-related protein Rab-7aHomo sapiens (human)
extracellular exosomeRas-related protein Rab-7aHomo sapiens (human)
alveolar lamellar bodyRas-related protein Rab-7aHomo sapiens (human)
late endosomeRas-related protein Rab-7aHomo sapiens (human)
phagocytic vesicleRas-related protein Rab-7aHomo sapiens (human)
lysosomeRas-related protein Rab-7aHomo sapiens (human)
Golgi membrane4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
Golgi apparatus4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
trans-Golgi network4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
trans-Golgi network membrane4-galactosyl-N-acetylglucosaminide 3-alpha-L-fucosyltransferase 9Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (20)

Assay IDTitleYearJournalArticle
AID1347082qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lassa (LASV) Arenavirus: LASV Primary Screen - GLuc reporter signal2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1347154Primary screen GU AMC qHTS for Zika virus inhibitors2020Proceedings of the National Academy of Sciences of the United States of America, 12-08, Volume: 117, Issue:49
Therapeutic candidates for the Zika virus identified by a high-throughput screen for Zika protease inhibitors.
AID1347083qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lassa (LASV) Arenavirus: Viability assay - alamar blue signal for LASV Primary Screen2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1347086qHTS for Inhibitors of the Functional Ribonucleoprotein Complex (vRNP) of Lymphocytic Choriomeningitis Arenaviruses (LCMV): LCMV Primary Screen - GLuc reporter signal2020Antiviral research, 01, Volume: 173A cell-based, infectious-free, platform to identify inhibitors of lassa virus ribonucleoprotein (vRNP) activity.
AID1508630Primary qHTS for small molecule stabilizers of the endoplasmic reticulum resident proteome: Secreted ER Calcium Modulated Protein (SERCaMP) assay2021Cell reports, 04-27, Volume: 35, Issue:4
A target-agnostic screen identifies approved drugs to stabilize the endoplasmic reticulum-resident proteome.
AID1331369Binding affinity to Mg2+ ion assessed as compound concentration required to show half maximal Mg2+ dependent shift by 31P NMR analysis2017ACS medicinal chemistry letters, Jan-12, Volume: 8, Issue:1
Covalent Guanosine Mimetic Inhibitors of G12C KRAS.
AID1172275Inhibition of human recombinant alpha1,3-fucosyltransferase 9 using GDP-[14C]-fucose preincubated for 30 mins by liquid scintillation counting2014Bioorganic & medicinal chemistry, Nov-15, Volume: 22, Issue:22
Synthesis and analysis of potential α1,3-fucosyltransferase inhibitors.
AID312071Incorporation of Poliovirus RNA dependent RNA polymerase into sym/sub-U primer2008Journal of medicinal chemistry, Jan-10, Volume: 51, Issue:1
Effects of introduction of hydrophobic group on ribavirin base on mutation induction and anti-RNA viral activity.
AID125977Effect of compound on assembly property of microtubule protein. 1.5 mg/mL MTP + 15 uM compound1994Journal of medicinal chemistry, May-13, Volume: 37, Issue:10
Characterization of two taxol photoaffinity analogues bearing azide and benzophenone-related photoreactive substituents in the A-ring side chain.
AID1331368Binding affinity to Mg2+ ion assessed as compound concentration required to reach Mg2+ dependent shift plateau by 31P NMR analysis2017ACS medicinal chemistry letters, Jan-12, Volume: 8, Issue:1
Covalent Guanosine Mimetic Inhibitors of G12C KRAS.
AID312075Ratio of kcat/Km of Poliovirus RNA dependent RNA polymerase incorporation into sym/sub-U primer2008Journal of medicinal chemistry, Jan-10, Volume: 51, Issue:1
Effects of introduction of hydrophobic group on ribavirin base on mutation induction and anti-RNA viral activity.
AID269136Binding affinity to Escherichia coli KPR2006Journal of medicinal chemistry, Aug-10, Volume: 49, Issue:16
Probing hot spots at protein-ligand binding sites: a fragment-based approach using biophysical methods.
AID234406Relative initial slope of the compound1994Journal of medicinal chemistry, May-13, Volume: 37, Issue:10
Characterization of two taxol photoaffinity analogues bearing azide and benzophenone-related photoreactive substituents in the A-ring side chain.
AID1172276Inhibition of Helicobacter pylori recombinant alpha1,3-fucosyltransferase using GDP-[14C]-fucose preincubated for 30 mins by liquid scintillation counting2014Bioorganic & medicinal chemistry, Nov-15, Volume: 22, Issue:22
Synthesis and analysis of potential α1,3-fucosyltransferase inhibitors.
AID125978Effect on microtubule protein assembly was determined in vitro1991Journal of medicinal chemistry, Mar, Volume: 34, Issue:3
Biologically active taxol analogues with deleted A-ring side chain substituents and variable C-2' configurations.
AID977611Experimentally measured binding affinity data (Kd) for protein-ligand complexes derived from PDB2002Proceedings of the National Academy of Sciences of the United States of America, Jan-08, Volume: 99, Issue:1
The structural mechanism of GTP stabilized oligomerization and catalytic activation of the Toxoplasma gondii uracil phosphoribosyltransferase.
AID1811Experimentally measured binding affinity data derived from PDB2002Proceedings of the National Academy of Sciences of the United States of America, Jan-08, Volume: 99, Issue:1
The structural mechanism of GTP stabilized oligomerization and catalytic activation of the Toxoplasma gondii uracil phosphoribosyltransferase.
AID1346348Human P2Y4 receptor (P2Y receptors)2000Molecular pharmacology, May, Volume: 57, Issue:5
ATP, an agonist at the rat P2Y(4) receptor, is an antagonist at the human P2Y(4) receptor.
AID1346293Rat P2Y4 receptor (P2Y receptors)2000Molecular pharmacology, May, Volume: 57, Issue:5
ATP, an agonist at the rat P2Y(4) receptor, is an antagonist at the human P2Y(4) receptor.
AID1346625Mouse Kir6.1 (Inwardly rectifying potassium channels)1997The Journal of physiology, Mar-15, Volume: 499 ( Pt 3)Sulphonylurea receptor 2B and Kir6.1 form a sulphonylurea-sensitive but ATP-insensitive K+ channel.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (14,439)

TimeframeStudies, This Drug (%)All Drugs %
pre-19905220 (36.15)18.7374
1990's4049 (28.04)18.2507
2000's2848 (19.72)29.6817
2010's1785 (12.36)24.3611
2020's537 (3.72)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials25 (0.17%)5.53%
Reviews757 (5.14%)6.00%
Case Studies28 (0.19%)4.05%
Observational0 (0.00%)0.25%
Other13,918 (94.50%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]