Page last updated: 2024-11-05

phenylhydrazine

Description Research Excerpts Clinical Trials Roles Classes Pathways Study Profile Bioassays Related Drugs Related Conditions Protein Interactions Research Growth Market Indicators

Cross-References

ID SourceID
PubMed CID7516
CHEMBL ID456807
CHEBI ID27924
SCHEMBL ID7099
SCHEMBL ID491697
MeSH IDM0095935

Synonyms (82)

Synonym
BIDD:ER0251
phenyl hydrazine
phenyl-hydrazine
hsdb 1117
fenylhydrazine [dutch]
hydrazine-benzene
ai3-15399
fenilidrazina [italian]
ccris 511
brn 0606080
un2572
einecs 202-873-5
phenylhydrazin [german]
inchi=1/c6h8n2/c7-8-6-4-2-1-3-5-6/h1-5,8h,7h
hydrazine, phenyl-
hydrazine,phenyl
1-phenylhydrazine
phenyldiazane
hydrazinobenzene
C02304
phenylhydrazine ,
100-63-0
phenylhydrazine, 97%
CHEBI:27924 ,
phnhnh2
monophenylhydrazine
phenylhydrazin
NCGC00159378-03
AKOS000268993
CHEMBL456807
125687-18-5
P0183
A23856
NCGC00159378-05
NCGC00159378-06
fenilidrazina
ec 202-873-5
phenylhydrazine [un2572] [poison]
fenylhydrazine
unii-064f424c9k
4-15-00-00050 (beilstein handbook reference)
064f424c9k ,
NCGC00256354-01
cas-100-63-0
dtxcid301147
tox21_303018
dtxsid8021147 ,
NCGC00259526-01
tox21_201977
STL163333
BBL011601
FT-0673782
FT-0645290
bdbm50444455
phenylhydrazine [who-dd]
phenylhydrazine [mi]
phenylhydrazine [hsdb]
SCHEMBL7099
BP-13438
phenyihydrazine
phenylhy-drazine
penylhydrazine
2-phenylhydrazine
n-phenylhydrazine
aminoaniline
anilino nitrogen
YLVKIBKAGUPACT-UHFFFAOYSA-N
SCHEMBL491697
un 2572
phenyl-d5-hydrazine hydrochloride
J-523951
J-000183
phenylhydrazne
phenylhydrazine, purum, >=95.0% (gc)
phenylhydrazine, purum p.a., >=95.0% (gc)
mfcd00007573
EN300-32001
Q290862
AMY22287
AD-0218
phenylhydrazine hydrazinobenzene
Z1954801770

Research Excerpts

Overview

Phenylhydrazine is a genotoxic impurity commonly used as a raw material in active pharmaceutical ingredients. It is a useful model for studying haemolytic anaemia in Atlantic cod with minimal effects on blood biochemistry and haematology.

ExcerptReferenceRelevance
"Phenylhydrazine is a genotoxic impurity commonly used as a raw material in active pharmaceutical ingredients. "( Sensitive quantitation of residual phenylhydrazine in antipyrine by LC-ICP-MS with iodo derivatization.
Haginaka, J; Harigaya, K; Horimoto, S; Nishi, H; Yamada, H, 2014
)
2.12
"Phenylhydrazine is a useful model for studying haemolytic anaemia in Atlantic cod with minimal effects on blood biochemistry and haematology and clearly reduces the aerobic capacity in Atlantic cod."( Cardiac remodelling, blood chemistry, haematology and oxygen consumption of Atlantic cod, Gadus morhua L., induced by experimental haemolytic anaemia with phenylhydrazine.
Burke, MS; Dahle, D; Powell, MD, 2011
)
1.29
"Phenylhydrazine was found to be a potent inducer of microsomal haem oxygenase activity in rat liver and kidney, but not in spleen. "( Phenylhydrazine-mediated induction of haem oxygenase activity in rat liver and kidney and development of hyperbilirubinaemia. Inhibition by zinc-protoporphyrin.
Maines, MD; Veltman, JC, 1984
)
3.15
"Phenylhydrazine was found to be a potent irreversible inhibitor of SSAO (IC50 30 nM)."( Inhibition of bovine lung semicarbazide-sensitive amine oxidase (SSAO) by some hydrazine derivatives.
Fernández de Arriba, A; Lizcano, JM; Tipton, KF; Unzeta, M, 1996
)
1.02
"Phenylhydrazine (Phz) is a powerful hemolytic agent which has several effects on both normal and G6PD deficient red blood cells (RBCs). "( A lectin-like receptor on murine macrophage is involved in the recognition and phagocytosis of human red cells oxidized by phenylhydrazine.
Bashan, N; Gopas, J; Horn, S, 1990
)
1.93
"Phenylhydrazine (PHZ) is a hemolytic agent which has been used in the treatment of polycythemia vera. "( Hemostatic alterations associated with phenylhydrazine-induced anemia in the rat.
Bush, ME; Dornfest, BS; Lapin, DM; Moore, E; Naughton, BA, 1989
)
1.99
"Phenylhydrazine is a hemolytic agent whose mechanism of action is related with the formation of free radicals and the induction of lipid peroxidation. "( Protective effect of the flavonoid silybin dihemisuccinate on the toxicity of phenylhydrazine on rat liver.
Guerra, R; Valenzuela, A, 1985
)
1.94

Effects

Phenylhydrazine has been previously shown to trigger the production of toxic oxygen metabolites including O-2 and H2O2. PhenylHydrazine in solution has been shown to produce hydroxyl radicals.

ExcerptReferenceRelevance
"Phenylhydrazine has been previously shown to trigger the production of toxic oxygen metabolites including O-2 and H2O2 and the formation of Heinz bodies."( Oxidative damage by phenylhydrazine diminishes erythrocyte anion transport.
Petty, HR; Zheng, Z; Zhou, MJ, 1991
)
1.33
"Phenylhydrazine in solution has been shown to produce hydroxyl radicals, as measured by 2-deoxyribose degradation assay. "( Phenylhydrazine mediated degradation of bovine serum albumin and membrane proteins of human erythrocytes.
Chakrabarti, S; Naik, AA; Reddy, GR, 1990
)
3.16

Actions

Phenylhydrazine promotes cellular ATP depletion followed by adenine nucleotide catabolism that is not efficiently counteracted by an increase in glucose utilization.

ExcerptReferenceRelevance
"The phenylhydrazine-mediated increase in haem oxygenase activity was time-dependent."( Phenylhydrazine-mediated induction of haem oxygenase activity in rat liver and kidney and development of hyperbilirubinaemia. Inhibition by zinc-protoporphyrin.
Maines, MD; Veltman, JC, 1984
)
2.19
"Thus phenylhydrazine promotes cellular ATP depletion followed by adenine nucleotide catabolism that is not efficiently counteracted by an increase in glucose utilization."( Effect of phenylhydrazine on red blood cell metabolism.
Cucchiarini, L; Fornaini, G; Magnani, M; Rossi, L; Stocchi, V, 1988
)
1.13

Treatment

Phenylhydrazine treatment did not alter the specific activities (U g(-1) tissue) of mitochondrial enzymes in white or red muscle. The phenylHydrazine-treated RBCs exhibited a marked decrease in deformability in a dose-dependent manner.

ExcerptReferenceRelevance
"Phenylhydrazine (PHZ) treatment is generally used to enhance parasitemia in infected mice models. "( Phenylhydrazine administration accelerates the development of experimental cerebral malaria.
Cao, Y; Feng, Y; Jiang, Y; Liu, J; Pang, W; Qi, Z; Shang, H; Zhu, X, 2015
)
3.3
"Phenylhydrazine treatment had no effect on AQP1a1-linked excretion of CO2 or ammonia, providing evidence that AQP1a1 localized to the yolk sac epithelium, rather than red blood cell AQP1a1, is the major site of CO2 and ammonia movements."( The water channel aquaporin-1a1 facilitates movement of CO₂ and ammonia in zebrafish (Danio rerio) larvae.
Gilmour, KM; Kwong, RW; Perry, SF; Talbot, K, 2015
)
1.14
"Phenylhydrazine treatment promoted liver iron accumulation and ferritin expression, causing hepatocyte death and increased plasma arachidonic acid (AA)."( Efficacy of sauchinone as a novel AMPK-activating lignan for preventing iron-induced oxidative stress and liver injury.
Brooks, JS; Hwang, SJ; Kang, HE; Kim, SC; Kim, SG; Kim, YW; Lee, MG; Lee, SM; Shin, SM, 2009
)
1.07
"Phenylhydrazine and heat treatment each led to near complete RBC clearance in recipients by 24 hours posttransfusion, without significantly altering HOD antigen expression on the transfused RBCs. "( Rapid clearance of transfused murine red blood cells is associated with recipient cytokine storm and enhanced alloimmunogenicity.
Cadwell, CM; Eisenbarth, SC; Hendrickson, JE; Hod, EA; Spiegel, DA; Spitalnik, SL; Tormey, CA; Zimring, JC, 2011
)
1.81
"phenylhydrazine treatment) did not alter the specific activities (U g(-1) tissue) of mitochondrial enzymes in white or red muscle."( Muscle remodeling in relation to blood supply: implications for seasonal changes in mitochondrial enzymes.
Dalziel, AC; Fragoso, NM; McClelland, GB; Moyes, CD, 2005
)
1.05
"Phenylhydrazine treatment increased the relative percentage of PC and concomitantly decreased the percentage of Sph."( Effect of erythropoietin on the lipid composition of red blood cell membrane.
Biswas, T; Datta, AG; Ghosal, J; Ghosh, A, 1984
)
0.99
"In phenylhydrazine-treated animals, the microsomal content of cytochrome P-450 was significantly decreased in the absence of a decrease in the microsomal haem concentration."( Phenylhydrazine-mediated induction of haem oxygenase activity in rat liver and kidney and development of hyperbilirubinaemia. Inhibition by zinc-protoporphyrin.
Maines, MD; Veltman, JC, 1984
)
2.22
"Phenylhydrazine treatment induced hydroxymethylbilane synthase activity (EC 4.3.1.8) in rat spleen, erythrocytes and liver by 40-fold, 7.5-fold and 6-fold respectively. "( Characterization of the multiple forms of hydroxymethylbilane synthase from rat spleen.
Williams, DC, 1984
)
1.71
"The phenylhydrazine-treated RBC in doses of 15, 75, and 150 mg of hemoglobin per 100 g depressed the clearance rate and splenic localization of a test dose of phenylhydrazine-treated RBC, whereas splenic clearance function was unchanged after a dose of 5 mg of hemoglobin per 100 g."( Effect of splenic sequestration of erythrocytes on splenic clearance function and susceptibility to septic peritonitis.
Grover, GJ; Loegering, DJ, 1982
)
0.75
"The phenylhydrazine-treated RBCs exhibited a marked decrease in deformability in a dose-dependent manner."( Impaired deformability of Heinz body-forming red cells.
Hasegawa, S; Rodgers, GP; Schechter, AN; Shio, H; Uyesaka, N,
)
0.61
"The phenylhydrazine treatment alkylated the prosthetic heme group of porphobilinogen oxygenase and N-phenylheme as well as N-phenylprotoporphyrin IX were isolated from the treated hemoprotein."( The dual oxygenase and peroxidase activities of porphobilinogen oxygenase and horseradish peroxidase: a study using the reaction with phenylhydrazine.
Fernández, M; Frydman, RB, 1991
)
0.97
"Phenylhydrazine-treated red blood cells exhibited concentration- and time-dependent changes in the level of membrane-associated procalpain relative to control."( Enhanced proteolysis and changes in membrane-associated calpain following phenylhydrazine insult to human red cells.
Mortensen, AM; Novak, RF, 1991
)
1.23
"In phenylhydrazine-pretreated mice with artificially high reticulocyte levels and infected with P.c."( Invasion of mature and immature erythrocytes of CBA/Ca mice by a cloned line of Plasmodium chabaudi chabaudi.
Brown, KN; Jarra, W, 1989
)
0.79
"In phenylhydrazine-treated rats receiving repeated phlebotomy, one rat in the 1-ml phlebotomy and two rats in the 2-ml phlebotomy died from severe anemia."( The influence of single or repeated phlebotomy on the physiological condition of normal and diseased rats.
Furuhama, K; Igarashi, K; Kato, M; Onodera, T; Suzuki, N, 1987
)
0.79
"Phenylhydrazine treatment of mice resulted in a 3-fold increase in blood CFU-f numbers which was accompanied by increases in blood cellularity and granulocyte-macrophage progenitor numbers."( Migration of fibroblastoid stromal cells in murine blood.
Brockbank, KG; Nikkels, PG; Ottenheim, CP; Piersma, AH; Ploemacher, RE, 1985
)
0.99
"Rats treated with phenylhydrazine exhaled greater concentrations of ethane (6-fold increase) and pentane (2-fold increase) compared to control animals."( Phenylhydrazine-induced lipid peroxidation of red blood cells in vitro and in vivo: monitoring by the production of volatile hydrocarbons.
Clemens, MR; Remmer, H; Waller, HD, 1984
)
2.03
"Treatment of phenylhydrazine-exposed erythrocytes either with bee venom phospholipase A2 or with trinitrobenzenesulfonic acid indicated that phosphatidylserine (PS), which is the only phospholipid not formally present on the outer leaflet of the membrane, was translocated to the outer surface of the cell membrane."( Effect of oxidative stress on membrane phospholipid and protein organization in human erythrocytes.
Arduini, A; Belfiglio, M; Federici, G; Mancinelli, G; Scurti, R; Stern, A; Storto, S, 1989
)
0.63

Toxicity

ExcerptReferenceRelevance
" HS and PHZ proved to be more toxic to the rabbit than to the rat although both chemicals produced similar hematological effects at equivalent dose levels within the same species."( Toxicity of hydroxylamine sulfate following dermal exposure: variability with exposure method and species.
Babich, PC; Derelanko, MJ; Gad, SC; Gavigan, FA; Rinehart, WE, 1987
)
0.27
" However, TB accumulated to near toxic levels during neonatal development, a finding that is independent of the Gilbert's UGT1A1*28 promoter polymorphism."( Developmental hyperbilirubinemia and CNS toxicity in mice humanized with the UDP glucuronosyltransferase 1 (UGT1) locus.
Chen, S; Fujiwara, R; Nguyen, N; Tukey, RH, 2010
)
0.36

Pharmacokinetics

ExcerptReferenceRelevance
"Injected acetyl phenylhydrazine and cyclophosphamide to make blood deficiency rats models subcutaneously,and gave mice the ethand extracts of Rehmanniae Radix preparata by oral administration,the concentration of acteoside in rats at different time points were detected by HPLC method, pharmacokinetic parameters were calculated by 3p87 software."( [Pharmacokinetic Effect of Acteoside in Blood Deficiency Rats].
Deng, ZJ; Guo, JW; Liu, RX; Liu, XW; Qi, YQ; Wang, JJ, 2016
)
0.78
" Compared with the normal group,the content of AUC0-tand AUC0-∞of corresponding dose in model group rats increased significantly, and the average dwell time and the elimination half-life prolong significantly."( [Pharmacokinetic Effect of Acteoside in Blood Deficiency Rats].
Deng, ZJ; Guo, JW; Liu, RX; Liu, XW; Qi, YQ; Wang, JJ, 2016
)
0.43
"This method has high specificity,high sensitivity and simple operation, which can be used for the determination to pharmacokinetic process of acteoside in blood deficiency model."( [Pharmacokinetic Effect of Acteoside in Blood Deficiency Rats].
Deng, ZJ; Guo, JW; Liu, RX; Liu, XW; Qi, YQ; Wang, JJ, 2016
)
0.43

Bioavailability

ExcerptReferenceRelevance
" Since excess hemoglobin in the plasma causes reduced nitric oxide (NO) bioavailability and oxidative stress, we hypothesized that esophageal contraction may be impaired by intravascular hemolysis."( Impairment of Nitric Oxide Pathway by Intravascular Hemolysis Plays a Major Role in Mice Esophageal Hypercontractility: Reversion by Soluble Guanylyl Cyclase Stimulator.
Beraldi Calmasini, F; Costa Alexandre, E; Fernanda Franco-Penteado, C; Ferreira Costa, F; Henrique Silva, F; Yotsumoto Fertrin, K, 2018
)
0.48

Dosage Studied

The thymus glands of wild and laboratory reared bank voles (Clethrionomys glareolus) were examined for ultrastructural changes. Lipid peroxidation following phenylhydrazine administration (in vitro experiments: dosage calculated at 0.5 mg/kg) was detected by ESR.

ExcerptRelevanceReference
" 2,4-Dinitrobenzyl alcohol, 2,4-dinitrobenzaldehyde, 2,4-dinitrobenzyl alcohol glucuronide and 4-amino-2-nitro(2-amino-4-nitro)benzyl sulphate were excreted in the bile of male Wistar rat dosed with 2,4-dinitrobenzyl alcohol."( Enterohepatic circulation of 2,4-dinitrobenzaldehyde, a mutagenic metabolite of 2,4-dinitrotoluene, in male Wistar rat.
Ishida, M; Kozuka, H; Mori, M; Okumura, K; Sayama, M, 1989
)
0.28
" Quantitative dose-response relationships for in vivo erythropoiesis are suggested."( A mathematical model of erythropoiesis in mice and rats. Part 2: Stimulated erythropoiesis.
Loeffler, M; Pantel, K; Wichmann, HE; Wulff, H, 1989
)
0.28
" An immobilized radical adduct was detected by ESR when phenylhydrazine was administered in a dosage comparable to that prescribed for currently employed hydrazine-based drugs."( In vivo rat hemoglobin thiyl free radical formation following phenylhydrazine administration.
Jordan, SJ; Maples, KR; Mason, RP, 1988
)
0.76
" Media conditioned by both +/+ and Sl/Sld marrow contains an inhibitor of CFU-S proliferation but day 8 CFU-S in +/+ and Sl/Sld marrow show marked dose-response differences to this factor."( Haemopoietic stem cell proliferation in the bone marrow of S1/S1d mice.
Lorimore, SA; Wright, EG, 1987
)
0.27
"The thymus glands of wild and laboratory reared bank voles (Clethrionomys glareolus) were examined for ultrastructural changes before and after the administration of low (20 mg/kg) and high (60 mg/kg) doses of phenylhydrazine (PhZ) given intraperitoneally on days 0, 1 and 3 of a dosing regime."( Ultrastructural studies on the thymus gland after the administration of phenylhydrazine to bank voles (Clethrionomys glareolus).
Blackett, NM; Kendall, MD, 1983
)
0.68
" The slope of the dose-response curve found for pure erythropoietin was not significantly different from that found for a crude urinary erythropoietin preparation or for crude sheep plasma erythropoietin."( The effect of erythropoietin and other factors on DNA synthesis by mouse spleen cells.
Goldwasser, E; Lappin, TR; Rich, I, 1983
)
0.27
" We examined the expression of the ferric reductase Dcytb, DMT1 and some other genes involved in Fe metabolism in tissues of mice dosed with PHZ."( Tissue-specific changes in iron metabolism genes in mice following phenylhydrazine-induced haemolysis.
Anderson, GJ; Latunde-Dada, GO; McKie, AT; Simpson, RJ; Vulpe, CD, 2004
)
0.56
" We previously applied a toxicogenomic approach to the toxicity by analyzing microarray data of the liver of rats dosed with two hemolytic agents: phenylhydrazine and phenacetin."( Toxicogenomics of drug-induced hemolytic anemia by analyzing gene expression profiles in the spleen.
Araki, A; Furukawa, N; Imura, K; Ishizaki, J; Itoh, F; Kato, I; Miyazaki, M; Okada, M; Omi, K; Rokushima, M; Torii, M; Yamamoto, J, 2007
)
0.54
" An initial TB was recorded in each animal, and a second recorded 1-4 d postinjection to generate a dose-response curve."( A new animal model of hemolytic hyperbilirubinemia-induced bilirubin encephalopathy (kernicterus).
Rice, AC; Shapiro, SM, 2008
)
0.35
" Responses to chronic erythropoietin dosing were also compromised."( A KIT juxtamembrane PY567 -directed pathway provides nonredundant signals for erythroid progenitor cell development and stress erythropoiesis.
Agosti, V; Besmer, P; Karur, V; Sathyanarayana, P; Wojchowski, DM, 2009
)
0.35
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Roles (1)

RoleDescription
xenobioticA xenobiotic (Greek, xenos "foreign"; bios "life") is a compound that is foreign to a living organism. Principal xenobiotics include: drugs, carcinogens and various compounds that have been introduced into the environment by artificial means.
[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 (1)

ClassDescription
phenylhydrazinesAny member of the class of hydrazines carrying a phenyl substituent.
[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 (32)

PathwayProteinsCompounds
putrescine degradation IV313
superpathway of allantoin degradation in plants516
allantoin degradation to ureidoglycolate II (ammonia producing)311
allantoin degradation to glyoxylate III014
u03B2-alanine biosynthesis I016
u03B2-alanine biosynthesis I015
L-homocysteine biosynthesis725
allantoin degradation to ureidoglycolate II (ammonia producing)518
allantoin degradation to glyoxylate III421
superpathway of allantoin degradation in plants416
spermidine biosynthesis I635
superpathway of L-lysine degradation33112
isethionate degradation010
L-lysine fermentation to acetate and butanoate857
superpathway of anaerobic energy metabolism (invertebrates)1660
anaerobic energy metabolism (invertebrates, cytosol)329
superpathway of polyamine biosynthesis I759
L-tryptophan degradation VI (via tryptamine)319
superpathway of arginine and polyamine biosynthesis18101
L-methionine biosynthesis III928
superpathway of L-methionine biosynthesis (by sulfhydrylation)1955
formaldehyde assimilation I (serine pathway)944
L-histidine degradation II522
4-aminobutanoate degradation II318
superpathway of 4-aminobutanoate degradation520
superpathway of L-cysteine biosynthesis (fungi)628
superpathway of sulfur amino acid biosynthesis (Saccharomyces cerevisiae)1043
L-ornithine degradation II (Stickland reaction)1043
putrescine degradation IV419
L-arginine degradation VIII (arginine oxidase pathway)325
L-arginine degradation (Stickland reaction)1254
superpathway of L-arginine, putrescine, and 4-aminobutanoate degradation1242
L-arginine degradation XI012
superpathway of L-arginine and L-ornithine degradation1347
trans-4-hydroxy-L-proline degradation I425
L-methionine biosynthesis323
cysteine biosynthesis IV (fungi)628

Protein Targets (29)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Chain A, TYROSYL-DNA PHOSPHODIESTERASEHomo sapiens (human)Potency7.94330.004023.8416100.0000AID485290
LuciferasePhotinus pyralis (common eastern firefly)Potency70.22780.007215.758889.3584AID1224835
AR proteinHomo sapiens (human)Potency14.03880.000221.22318,912.5098AID743035; AID743063
estrogen receptor 2 (ER beta)Homo sapiens (human)Potency1.51840.000657.913322,387.1992AID1259378
nuclear receptor subfamily 1, group I, member 3Homo sapiens (human)Potency53.23560.001022.650876.6163AID1224838; AID1224839; AID1224893
glucocorticoid receptor [Homo sapiens]Homo sapiens (human)Potency43.16110.000214.376460.0339AID720692
retinoic acid nuclear receptor alpha variant 1Homo sapiens (human)Potency52.37160.003041.611522,387.1992AID1159552; AID1159553; AID1159555
estrogen-related nuclear receptor alphaHomo sapiens (human)Potency12.55590.001530.607315,848.9004AID1224848; AID1224849; AID1259403
pregnane X nuclear receptorHomo sapiens (human)Potency53.87380.005428.02631,258.9301AID1346982
estrogen nuclear receptor alphaHomo sapiens (human)Potency5.64110.000229.305416,493.5996AID743069; AID743078
aryl hydrocarbon receptorHomo sapiens (human)Potency18.57930.000723.06741,258.9301AID743085; AID743122
Histone H2A.xCricetulus griseus (Chinese hamster)Potency65.35880.039147.5451146.8240AID1224845
vitamin D3 receptor isoform VDRAHomo sapiens (human)Potency44.66840.354828.065989.1251AID504847
thyroid hormone receptor beta isoform 2Rattus norvegicus (Norway rat)Potency46.13580.000323.4451159.6830AID743065; AID743067
nuclear factor erythroid 2-related factor 2 isoform 1Homo sapiens (human)Potency53.87380.000627.21521,122.0200AID743202; AID743219
DNA polymerase kappa isoform 1Homo sapiens (human)Potency23.77810.031622.3146100.0000AID588579
histone acetyltransferase KAT2A isoform 1Homo sapiens (human)Potency11.22020.251215.843239.8107AID504327
lamin isoform A-delta10Homo sapiens (human)Potency0.03160.891312.067628.1838AID1487
[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)
Cytochrome P450 1A2Homo sapiens (human)IC50 (µMol)8.00000.00011.774010.0000AID625245
Cytochrome P450 3A4Homo sapiens (human)IC50 (µMol)0.90000.00011.753610.0000AID625251
Cytochrome P450 2D6Homo sapiens (human)IC50 (µMol)3.00000.00002.015110.0000AID625249
Cytochrome P450 2C9 Homo sapiens (human)IC50 (µMol)6.00000.00002.800510.0000AID625248
Polyunsaturated fatty acid lipoxygenase ALOX15Oryctolagus cuniculus (rabbit)IC50 (µMol)1.66600.11003.26419.0330AID625146
Indoleamine 2,3-dioxygenase 1Homo sapiens (human)IC50 (µMol)0.59330.05373.075710.0000AID1059424; AID1059429; AID1276958
Indoleamine 2,3-dioxygenase 1Mus musculus (house mouse)IC50 (µMol)0.20000.00601.625110.0000AID1059423
Cytochrome P450 2C19Homo sapiens (human)IC50 (µMol)5.00000.00002.398310.0000AID625247
Prostaglandin G/H synthase 2Homo sapiens (human)IC50 (µMol)1.51400.00010.995010.0000AID625244
Mu-type opioid receptorMus musculus (house mouse)IC50 (µMol)0.25000.00081.699210.0000AID1059429
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Biological Processes (134)

Processvia Protein(s)Taxonomy
steroid catabolic processCytochrome P450 1A2Homo sapiens (human)
porphyrin-containing compound metabolic processCytochrome P450 1A2Homo sapiens (human)
xenobiotic metabolic processCytochrome P450 1A2Homo sapiens (human)
cholesterol metabolic processCytochrome P450 1A2Homo sapiens (human)
estrogen metabolic processCytochrome P450 1A2Homo sapiens (human)
toxin biosynthetic processCytochrome P450 1A2Homo sapiens (human)
post-embryonic developmentCytochrome P450 1A2Homo sapiens (human)
alkaloid metabolic processCytochrome P450 1A2Homo sapiens (human)
regulation of gene expressionCytochrome P450 1A2Homo sapiens (human)
monoterpenoid metabolic processCytochrome P450 1A2Homo sapiens (human)
dibenzo-p-dioxin metabolic processCytochrome P450 1A2Homo sapiens (human)
epoxygenase P450 pathwayCytochrome P450 1A2Homo sapiens (human)
lung developmentCytochrome P450 1A2Homo sapiens (human)
methylationCytochrome P450 1A2Homo sapiens (human)
monocarboxylic acid metabolic processCytochrome P450 1A2Homo sapiens (human)
xenobiotic catabolic processCytochrome P450 1A2Homo sapiens (human)
retinol metabolic processCytochrome P450 1A2Homo sapiens (human)
long-chain fatty acid biosynthetic processCytochrome P450 1A2Homo sapiens (human)
cellular respirationCytochrome P450 1A2Homo sapiens (human)
aflatoxin metabolic processCytochrome P450 1A2Homo sapiens (human)
hydrogen peroxide biosynthetic processCytochrome P450 1A2Homo sapiens (human)
oxidative demethylationCytochrome P450 1A2Homo sapiens (human)
cellular response to cadmium ionCytochrome P450 1A2Homo sapiens (human)
omega-hydroxylase P450 pathwayCytochrome P450 1A2Homo sapiens (human)
lipid hydroxylationCytochrome P450 3A4Homo sapiens (human)
lipid metabolic processCytochrome P450 3A4Homo sapiens (human)
steroid catabolic processCytochrome P450 3A4Homo sapiens (human)
xenobiotic metabolic processCytochrome P450 3A4Homo sapiens (human)
steroid metabolic processCytochrome P450 3A4Homo sapiens (human)
cholesterol metabolic processCytochrome P450 3A4Homo sapiens (human)
androgen metabolic processCytochrome P450 3A4Homo sapiens (human)
estrogen metabolic processCytochrome P450 3A4Homo sapiens (human)
alkaloid catabolic processCytochrome P450 3A4Homo sapiens (human)
monoterpenoid metabolic processCytochrome P450 3A4Homo sapiens (human)
calcitriol biosynthetic process from calciolCytochrome P450 3A4Homo sapiens (human)
xenobiotic catabolic processCytochrome P450 3A4Homo sapiens (human)
vitamin D metabolic processCytochrome P450 3A4Homo sapiens (human)
vitamin D catabolic processCytochrome P450 3A4Homo sapiens (human)
retinol metabolic processCytochrome P450 3A4Homo sapiens (human)
retinoic acid metabolic processCytochrome P450 3A4Homo sapiens (human)
long-chain fatty acid biosynthetic processCytochrome P450 3A4Homo sapiens (human)
aflatoxin metabolic processCytochrome P450 3A4Homo sapiens (human)
oxidative demethylationCytochrome P450 3A4Homo sapiens (human)
xenobiotic metabolic processCytochrome P450 2D6Homo sapiens (human)
steroid metabolic processCytochrome P450 2D6Homo sapiens (human)
cholesterol metabolic processCytochrome P450 2D6Homo sapiens (human)
estrogen metabolic processCytochrome P450 2D6Homo sapiens (human)
coumarin metabolic processCytochrome P450 2D6Homo sapiens (human)
alkaloid metabolic processCytochrome P450 2D6Homo sapiens (human)
alkaloid catabolic processCytochrome P450 2D6Homo sapiens (human)
monoterpenoid metabolic processCytochrome P450 2D6Homo sapiens (human)
isoquinoline alkaloid metabolic processCytochrome P450 2D6Homo sapiens (human)
xenobiotic catabolic processCytochrome P450 2D6Homo sapiens (human)
retinol metabolic processCytochrome P450 2D6Homo sapiens (human)
long-chain fatty acid biosynthetic processCytochrome P450 2D6Homo sapiens (human)
negative regulation of bindingCytochrome P450 2D6Homo sapiens (human)
oxidative demethylationCytochrome P450 2D6Homo sapiens (human)
negative regulation of cellular organofluorine metabolic processCytochrome P450 2D6Homo sapiens (human)
arachidonic acid metabolic processCytochrome P450 2D6Homo sapiens (human)
xenobiotic metabolic processCytochrome P450 2C9 Homo sapiens (human)
steroid metabolic processCytochrome P450 2C9 Homo sapiens (human)
cholesterol metabolic processCytochrome P450 2C9 Homo sapiens (human)
estrogen metabolic processCytochrome P450 2C9 Homo sapiens (human)
monoterpenoid metabolic processCytochrome P450 2C9 Homo sapiens (human)
epoxygenase P450 pathwayCytochrome P450 2C9 Homo sapiens (human)
urea metabolic processCytochrome P450 2C9 Homo sapiens (human)
monocarboxylic acid metabolic processCytochrome P450 2C9 Homo sapiens (human)
xenobiotic catabolic processCytochrome P450 2C9 Homo sapiens (human)
long-chain fatty acid biosynthetic processCytochrome P450 2C9 Homo sapiens (human)
amide metabolic processCytochrome P450 2C9 Homo sapiens (human)
icosanoid biosynthetic processCytochrome P450 2C9 Homo sapiens (human)
oxidative demethylationCytochrome P450 2C9 Homo sapiens (human)
omega-hydroxylase P450 pathwayCytochrome P450 2C9 Homo sapiens (human)
regulation of activated T cell proliferationIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
positive regulation of T cell tolerance inductionIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
positive regulation of chronic inflammatory responseIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
positive regulation of type 2 immune responseIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
tryptophan catabolic processIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
inflammatory responseIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
female pregnancyIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
tryptophan catabolic process to kynurenineIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
response to lipopolysaccharideIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
negative regulation of interleukin-10 productionIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
positive regulation of interleukin-12 productionIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
multicellular organismal response to stressIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
kynurenic acid biosynthetic processIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
swimming behaviorIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
T cell proliferationIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
negative regulation of T cell proliferationIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
negative regulation of T cell apoptotic processIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
positive regulation of T cell apoptotic processIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
'de novo' NAD biosynthetic process from tryptophanIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
long-chain fatty acid metabolic processCytochrome P450 2C19Homo sapiens (human)
xenobiotic metabolic processCytochrome P450 2C19Homo sapiens (human)
steroid metabolic processCytochrome P450 2C19Homo sapiens (human)
monoterpenoid metabolic processCytochrome P450 2C19Homo sapiens (human)
epoxygenase P450 pathwayCytochrome P450 2C19Homo sapiens (human)
xenobiotic catabolic processCytochrome P450 2C19Homo sapiens (human)
omega-hydroxylase P450 pathwayCytochrome P450 2C19Homo sapiens (human)
prostaglandin biosynthetic processProstaglandin G/H synthase 2Homo sapiens (human)
angiogenesisProstaglandin G/H synthase 2Homo sapiens (human)
response to oxidative stressProstaglandin G/H synthase 2Homo sapiens (human)
embryo implantationProstaglandin G/H synthase 2Homo sapiens (human)
learningProstaglandin G/H synthase 2Homo sapiens (human)
memoryProstaglandin G/H synthase 2Homo sapiens (human)
regulation of blood pressureProstaglandin G/H synthase 2Homo sapiens (human)
negative regulation of cell population proliferationProstaglandin G/H synthase 2Homo sapiens (human)
response to xenobiotic stimulusProstaglandin G/H synthase 2Homo sapiens (human)
response to nematodeProstaglandin G/H synthase 2Homo sapiens (human)
response to fructoseProstaglandin G/H synthase 2Homo sapiens (human)
response to manganese ionProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of vascular endothelial growth factor productionProstaglandin G/H synthase 2Homo sapiens (human)
cyclooxygenase pathwayProstaglandin G/H synthase 2Homo sapiens (human)
bone mineralizationProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of prostaglandin biosynthetic processProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of fever generationProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of synaptic plasticityProstaglandin G/H synthase 2Homo sapiens (human)
negative regulation of synaptic transmission, dopaminergicProstaglandin G/H synthase 2Homo sapiens (human)
prostaglandin secretionProstaglandin G/H synthase 2Homo sapiens (human)
response to estradiolProstaglandin G/H synthase 2Homo sapiens (human)
response to lipopolysaccharideProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of peptidyl-serine phosphorylationProstaglandin G/H synthase 2Homo sapiens (human)
response to vitamin DProstaglandin G/H synthase 2Homo sapiens (human)
cellular response to heatProstaglandin G/H synthase 2Homo sapiens (human)
response to tumor necrosis factorProstaglandin G/H synthase 2Homo sapiens (human)
maintenance of blood-brain barrierProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of protein import into nucleusProstaglandin G/H synthase 2Homo sapiens (human)
hair cycleProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of apoptotic processProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of nitric oxide biosynthetic processProstaglandin G/H synthase 2Homo sapiens (human)
negative regulation of cell cycleProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of vasoconstrictionProstaglandin G/H synthase 2Homo sapiens (human)
negative regulation of smooth muscle contractionProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of smooth muscle contractionProstaglandin G/H synthase 2Homo sapiens (human)
decidualizationProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of smooth muscle cell proliferationProstaglandin G/H synthase 2Homo sapiens (human)
regulation of inflammatory responseProstaglandin G/H synthase 2Homo sapiens (human)
brown fat cell differentiationProstaglandin G/H synthase 2Homo sapiens (human)
response to glucocorticoidProstaglandin G/H synthase 2Homo sapiens (human)
negative regulation of calcium ion transportProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of synaptic transmission, glutamatergicProstaglandin G/H synthase 2Homo sapiens (human)
response to fatty acidProstaglandin G/H synthase 2Homo sapiens (human)
cellular response to mechanical stimulusProstaglandin G/H synthase 2Homo sapiens (human)
cellular response to lead ionProstaglandin G/H synthase 2Homo sapiens (human)
cellular response to ATPProstaglandin G/H synthase 2Homo sapiens (human)
cellular response to hypoxiaProstaglandin G/H synthase 2Homo sapiens (human)
cellular response to non-ionic osmotic stressProstaglandin G/H synthase 2Homo sapiens (human)
cellular response to fluid shear stressProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of transforming growth factor beta productionProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of cell migration involved in sprouting angiogenesisProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of fibroblast growth factor productionProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of brown fat cell differentiationProstaglandin G/H synthase 2Homo sapiens (human)
positive regulation of platelet-derived growth factor productionProstaglandin G/H synthase 2Homo sapiens (human)
cellular oxidant detoxificationProstaglandin G/H synthase 2Homo sapiens (human)
regulation of neuroinflammatory responseProstaglandin G/H synthase 2Homo sapiens (human)
negative regulation of intrinsic apoptotic signaling pathway in response to osmotic stressProstaglandin G/H synthase 2Homo sapiens (human)
cellular response to homocysteineProstaglandin G/H synthase 2Homo sapiens (human)
response to angiotensinProstaglandin G/H synthase 2Homo sapiens (human)
regulation of autophagyHistone acetyltransferase KAT8Homo sapiens (human)
negative regulation of epithelial to mesenchymal transitionHistone acetyltransferase KAT8Homo sapiens (human)
neurogenesisHistone acetyltransferase KAT8Homo sapiens (human)
myeloid cell differentiationHistone acetyltransferase KAT8Homo sapiens (human)
negative regulation of type I interferon productionHistone acetyltransferase KAT8Homo sapiens (human)
post-embryonic hemopoiesisHistone acetyltransferase KAT8Homo sapiens (human)
transcription initiation-coupled chromatin remodelingHistone acetyltransferase KAT8Homo sapiens (human)
negative regulation of DNA-templated transcriptionHistone acetyltransferase KAT8Homo sapiens (human)
positive regulation of DNA-templated transcriptionHistone acetyltransferase KAT8Homo sapiens (human)
oogenesisHistone acetyltransferase KAT8Homo sapiens (human)
regulation of mRNA processingHistone acetyltransferase KAT8Homo sapiens (human)
positive regulation of transcription initiation by RNA polymerase IIHistone acetyltransferase KAT8Homo sapiens (human)
positive regulation of skeletal muscle satellite cell differentiationHistone acetyltransferase KAT8Homo sapiens (human)
regulation of mitochondrial transcriptionHistone acetyltransferase KAT8Homo sapiens (human)
regulation of transcription by RNA polymerase IIHistone acetyltransferase KAT8Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Molecular Functions (51)

Processvia Protein(s)Taxonomy
monooxygenase activityCytochrome P450 1A2Homo sapiens (human)
iron ion bindingCytochrome P450 1A2Homo sapiens (human)
protein bindingCytochrome P450 1A2Homo sapiens (human)
electron transfer activityCytochrome P450 1A2Homo sapiens (human)
oxidoreductase activityCytochrome P450 1A2Homo sapiens (human)
oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, reduced flavin or flavoprotein as one donor, and incorporation of one atom of oxygenCytochrome P450 1A2Homo sapiens (human)
enzyme bindingCytochrome P450 1A2Homo sapiens (human)
heme bindingCytochrome P450 1A2Homo sapiens (human)
demethylase activityCytochrome P450 1A2Homo sapiens (human)
caffeine oxidase activityCytochrome P450 1A2Homo sapiens (human)
aromatase activityCytochrome P450 1A2Homo sapiens (human)
estrogen 16-alpha-hydroxylase activityCytochrome P450 1A2Homo sapiens (human)
estrogen 2-hydroxylase activityCytochrome P450 1A2Homo sapiens (human)
hydroperoxy icosatetraenoate dehydratase activityCytochrome P450 1A2Homo sapiens (human)
monooxygenase activityCytochrome P450 3A4Homo sapiens (human)
steroid bindingCytochrome P450 3A4Homo sapiens (human)
iron ion bindingCytochrome P450 3A4Homo sapiens (human)
protein bindingCytochrome P450 3A4Homo sapiens (human)
steroid hydroxylase activityCytochrome P450 3A4Homo sapiens (human)
retinoic acid 4-hydroxylase activityCytochrome P450 3A4Homo sapiens (human)
oxidoreductase activityCytochrome P450 3A4Homo sapiens (human)
oxygen bindingCytochrome P450 3A4Homo sapiens (human)
enzyme bindingCytochrome P450 3A4Homo sapiens (human)
heme bindingCytochrome P450 3A4Homo sapiens (human)
vitamin D3 25-hydroxylase activityCytochrome P450 3A4Homo sapiens (human)
caffeine oxidase activityCytochrome P450 3A4Homo sapiens (human)
quinine 3-monooxygenase activityCytochrome P450 3A4Homo sapiens (human)
testosterone 6-beta-hydroxylase activityCytochrome P450 3A4Homo sapiens (human)
1-alpha,25-dihydroxyvitamin D3 23-hydroxylase activityCytochrome P450 3A4Homo sapiens (human)
anandamide 8,9 epoxidase activityCytochrome P450 3A4Homo sapiens (human)
anandamide 11,12 epoxidase activityCytochrome P450 3A4Homo sapiens (human)
anandamide 14,15 epoxidase activityCytochrome P450 3A4Homo sapiens (human)
aromatase activityCytochrome P450 3A4Homo sapiens (human)
vitamin D 24-hydroxylase activityCytochrome P450 3A4Homo sapiens (human)
estrogen 16-alpha-hydroxylase activityCytochrome P450 3A4Homo sapiens (human)
estrogen 2-hydroxylase activityCytochrome P450 3A4Homo sapiens (human)
1,8-cineole 2-exo-monooxygenase activityCytochrome P450 3A4Homo sapiens (human)
monooxygenase activityCytochrome P450 2D6Homo sapiens (human)
iron ion bindingCytochrome P450 2D6Homo sapiens (human)
oxidoreductase activityCytochrome P450 2D6Homo sapiens (human)
oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, reduced flavin or flavoprotein as one donor, and incorporation of one atom of oxygenCytochrome P450 2D6Homo sapiens (human)
heme bindingCytochrome P450 2D6Homo sapiens (human)
anandamide 8,9 epoxidase activityCytochrome P450 2D6Homo sapiens (human)
anandamide 11,12 epoxidase activityCytochrome P450 2D6Homo sapiens (human)
anandamide 14,15 epoxidase activityCytochrome P450 2D6Homo sapiens (human)
monooxygenase activityCytochrome P450 2C9 Homo sapiens (human)
iron ion bindingCytochrome P450 2C9 Homo sapiens (human)
arachidonic acid epoxygenase activityCytochrome P450 2C9 Homo sapiens (human)
steroid hydroxylase activityCytochrome P450 2C9 Homo sapiens (human)
arachidonic acid 14,15-epoxygenase activityCytochrome P450 2C9 Homo sapiens (human)
arachidonic acid 11,12-epoxygenase activityCytochrome P450 2C9 Homo sapiens (human)
oxidoreductase activityCytochrome P450 2C9 Homo sapiens (human)
(S)-limonene 6-monooxygenase activityCytochrome P450 2C9 Homo sapiens (human)
(S)-limonene 7-monooxygenase activityCytochrome P450 2C9 Homo sapiens (human)
caffeine oxidase activityCytochrome P450 2C9 Homo sapiens (human)
(R)-limonene 6-monooxygenase activityCytochrome P450 2C9 Homo sapiens (human)
aromatase activityCytochrome P450 2C9 Homo sapiens (human)
heme bindingCytochrome P450 2C9 Homo sapiens (human)
oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, reduced flavin or flavoprotein as one donor, and incorporation of one atom of oxygenCytochrome P450 2C9 Homo sapiens (human)
electron transfer activityIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
heme bindingIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
indoleamine 2,3-dioxygenase activityIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
metal ion bindingIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
tryptophan 2,3-dioxygenase activityIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
monooxygenase activityCytochrome P450 2C19Homo sapiens (human)
iron ion bindingCytochrome P450 2C19Homo sapiens (human)
steroid hydroxylase activityCytochrome P450 2C19Homo sapiens (human)
oxidoreductase activityCytochrome P450 2C19Homo sapiens (human)
(S)-limonene 6-monooxygenase activityCytochrome P450 2C19Homo sapiens (human)
(S)-limonene 7-monooxygenase activityCytochrome P450 2C19Homo sapiens (human)
oxygen bindingCytochrome P450 2C19Homo sapiens (human)
enzyme bindingCytochrome P450 2C19Homo sapiens (human)
heme bindingCytochrome P450 2C19Homo sapiens (human)
(R)-limonene 6-monooxygenase activityCytochrome P450 2C19Homo sapiens (human)
aromatase activityCytochrome P450 2C19Homo sapiens (human)
long-chain fatty acid omega-1 hydroxylase activityCytochrome P450 2C19Homo sapiens (human)
arachidonic acid epoxygenase activityCytochrome P450 2C19Homo sapiens (human)
oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, reduced flavin or flavoprotein as one donor, and incorporation of one atom of oxygenCytochrome P450 2C19Homo sapiens (human)
peroxidase activityProstaglandin G/H synthase 2Homo sapiens (human)
prostaglandin-endoperoxide synthase activityProstaglandin G/H synthase 2Homo sapiens (human)
protein bindingProstaglandin G/H synthase 2Homo sapiens (human)
enzyme bindingProstaglandin G/H synthase 2Homo sapiens (human)
heme bindingProstaglandin G/H synthase 2Homo sapiens (human)
protein homodimerization activityProstaglandin G/H synthase 2Homo sapiens (human)
metal ion bindingProstaglandin G/H synthase 2Homo sapiens (human)
oxidoreductase activity, acting on single donors with incorporation of molecular oxygen, incorporation of two atoms of oxygenProstaglandin G/H synthase 2Homo sapiens (human)
histone H4K5 acetyltransferase activityHistone acetyltransferase KAT8Homo sapiens (human)
histone H4K8 acetyltransferase activityHistone acetyltransferase KAT8Homo sapiens (human)
histone H4K16 acetyltransferase activityHistone acetyltransferase KAT8Homo sapiens (human)
transcription coactivator activityHistone acetyltransferase KAT8Homo sapiens (human)
protein bindingHistone acetyltransferase KAT8Homo sapiens (human)
histone H4 acetyltransferase activityHistone acetyltransferase KAT8Homo sapiens (human)
enzyme bindingHistone acetyltransferase KAT8Homo sapiens (human)
histone H4K5 acetyltransferase activityHistone acetyltransferase KAT8Homo sapiens (human)
histone H4K8 acetyltransferase activityHistone acetyltransferase KAT8Homo sapiens (human)
metal ion bindingHistone acetyltransferase KAT8Homo sapiens (human)
histone H4K16 acetyltransferase activityHistone acetyltransferase KAT8Homo sapiens (human)
RNA polymerase II-specific DNA-binding transcription factor bindingHistone acetyltransferase KAT8Homo sapiens (human)
peptide-lysine-N-acetyltransferase activityHistone acetyltransferase KAT8Homo sapiens (human)
protein propionyltransferase activityHistone acetyltransferase KAT8Homo sapiens (human)
transcription coregulator activityHistone acetyltransferase KAT8Homo sapiens (human)
chromatin bindingHistone acetyltransferase KAT8Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Ceullar Components (26)

Processvia Protein(s)Taxonomy
endoplasmic reticulum membraneCytochrome P450 1A2Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 1A2Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 1A2Homo sapiens (human)
cytoplasmCytochrome P450 3A4Homo sapiens (human)
endoplasmic reticulum membraneCytochrome P450 3A4Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 3A4Homo sapiens (human)
mitochondrionCytochrome P450 2D6Homo sapiens (human)
endoplasmic reticulumCytochrome P450 2D6Homo sapiens (human)
endoplasmic reticulum membraneCytochrome P450 2D6Homo sapiens (human)
cytoplasmCytochrome P450 2D6Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 2D6Homo sapiens (human)
endoplasmic reticulum membraneCytochrome P450 2C9 Homo sapiens (human)
plasma membraneCytochrome P450 2C9 Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 2C9 Homo sapiens (human)
cytoplasmCytochrome P450 2C9 Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 2C9 Homo sapiens (human)
cytosolIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
smooth muscle contractile fiberIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
stereocilium bundleIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
cytoplasmIndoleamine 2,3-dioxygenase 1Homo sapiens (human)
endoplasmic reticulum membraneCytochrome P450 2C19Homo sapiens (human)
plasma membraneCytochrome P450 2C19Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 2C19Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 2C19Homo sapiens (human)
cytoplasmCytochrome P450 2C19Homo sapiens (human)
nuclear inner membraneProstaglandin G/H synthase 2Homo sapiens (human)
nuclear outer membraneProstaglandin G/H synthase 2Homo sapiens (human)
cytoplasmProstaglandin G/H synthase 2Homo sapiens (human)
endoplasmic reticulumProstaglandin G/H synthase 2Homo sapiens (human)
endoplasmic reticulum lumenProstaglandin G/H synthase 2Homo sapiens (human)
endoplasmic reticulum membraneProstaglandin G/H synthase 2Homo sapiens (human)
caveolaProstaglandin G/H synthase 2Homo sapiens (human)
neuron projectionProstaglandin G/H synthase 2Homo sapiens (human)
protein-containing complexProstaglandin G/H synthase 2Homo sapiens (human)
neuron projectionProstaglandin G/H synthase 2Homo sapiens (human)
cytoplasmProstaglandin G/H synthase 2Homo sapiens (human)
plasma membraneMu-type opioid receptorMus musculus (house mouse)
nucleusHistone acetyltransferase KAT8Homo sapiens (human)
chromosomeHistone acetyltransferase KAT8Homo sapiens (human)
kinetochoreHistone acetyltransferase KAT8Homo sapiens (human)
nucleusHistone acetyltransferase KAT8Homo sapiens (human)
nucleoplasmHistone acetyltransferase KAT8Homo sapiens (human)
mitochondrionHistone acetyltransferase KAT8Homo sapiens (human)
nuclear matrixHistone acetyltransferase KAT8Homo sapiens (human)
NSL complexHistone acetyltransferase KAT8Homo sapiens (human)
MSL complexHistone acetyltransferase KAT8Homo sapiens (human)
histone acetyltransferase complexHistone acetyltransferase KAT8Homo sapiens (human)
MLL1 complexHistone acetyltransferase KAT8Homo sapiens (human)
chromatinHistone acetyltransferase KAT8Homo sapiens (human)
NuA4 histone acetyltransferase complexHistone acetyltransferase KAT8Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (11)

Assay IDTitleYearJournalArticle
AID1059427Ratio of 2-hydrazinobenzothiazole IC50 to compound IC50 for recombinant human IDO12013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Discovery and characterisation of hydrazines as inhibitors of the immune suppressive enzyme, indoleamine 2,3-dioxygenase 1 (IDO1).
AID1059426Binding affinity to recombinant human ferric form of IDO1 using SYPRO orange dye by differential scanning fluorimetry analysis2013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Discovery and characterisation of hydrazines as inhibitors of the immune suppressive enzyme, indoleamine 2,3-dioxygenase 1 (IDO1).
AID1507709Inhibition of N-terminal His6-tagged KAT8 catalytic domain (125 to 458 residues) (unknown origin) expressed in Escherichia coli BL21(DE3) using SGRGKGGKGLGKGGAKRHRK-NH2 as substrate after 5 mins in presence of Ac-CoA by fluorescence assay2017European journal of medicinal chemistry, Aug-18, Volume: 136The relevance of K
AID1059425Binding affinity to recombinant human ferrous form of IDO1 using SYPRO orange dye by differential scanning fluorimetry analysis2013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Discovery and characterisation of hydrazines as inhibitors of the immune suppressive enzyme, indoleamine 2,3-dioxygenase 1 (IDO1).
AID409958Inhibition of bovine brain MAOA2008Journal of medicinal chemistry, Nov-13, Volume: 51, Issue:21
Quantitative structure-activity relationship and complex network approach to monoamine oxidase A and B inhibitors.
AID1059424Inhibition of human IDO1 expressed in mouse LLTC cells using L-tryptophan as substrate after 24 hrs2013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Discovery and characterisation of hydrazines as inhibitors of the immune suppressive enzyme, indoleamine 2,3-dioxygenase 1 (IDO1).
AID1059422Cytotoxicity against mouse LLTC cells at IC50 by MTT assay2013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Discovery and characterisation of hydrazines as inhibitors of the immune suppressive enzyme, indoleamine 2,3-dioxygenase 1 (IDO1).
AID1059423Inhibition of mouse IDO1 expressed in mouse LLTC cells using L-tryptophan as substrate after 24 hrs2013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Discovery and characterisation of hydrazines as inhibitors of the immune suppressive enzyme, indoleamine 2,3-dioxygenase 1 (IDO1).
AID1059429Inhibition of recombinant human IDO1 expressed in Escherichia coli EC538 using L-tryptophan as substrate after 1 hr2013Bioorganic & medicinal chemistry, Dec-15, Volume: 21, Issue:24
Discovery and characterisation of hydrazines as inhibitors of the immune suppressive enzyme, indoleamine 2,3-dioxygenase 1 (IDO1).
AID1276958Inhibition of recombinant human IDO1 assessed as reduction in kynurenine production using L-tryptophan as substrate after 60 mins by microplate reader method2016European journal of medicinal chemistry, Jan-27, Volume: 108O-alkylhydroxylamines as rationally-designed mechanism-based inhibitors of indoleamine 2,3-dioxygenase-1.
AID504749qHTS profiling for inhibitors of Plasmodium falciparum proliferation2011Science (New York, N.Y.), Aug-05, Volume: 333, Issue:6043
Chemical genomic profiling for antimalarial therapies, response signatures, and molecular targets.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (862)

TimeframeStudies, This Drug (%)All Drugs %
pre-1990449 (52.09)18.7374
1990's162 (18.79)18.2507
2000's126 (14.62)29.6817
2010's116 (13.46)24.3611
2020's9 (1.04)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 75.30

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 very strong demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index75.30 (24.57)
Research Supply Index6.83 (2.92)
Research Growth Index4.31 (4.65)
Search Engine Demand Index133.23 (26.88)
Search Engine Supply Index2.00 (0.95)

This Compound (75.30)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials0 (0.00%)5.53%
Reviews10 (1.09%)6.00%
Case Studies0 (0.00%)4.05%
Observational0 (0.00%)0.25%
Other911 (98.91%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]