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GENE - CHEMICAL INTERACTIONS REPORT

RGD ID: 1352962
Species: Homo sapiens
RGD Object: Gene
Symbol: CYP3A4
Name: cytochrome P450 family 3 subfamily A member 4
Acc ID: CHEBI:34477
Term: 6beta-hydroxytestosterone
Definition: A 17beta-hydroxy steroid that is testosterone bearing an additional hydroxy substituent at the 6beta-position.
Chemical ID: MESH:C025591
Note: Use of the qualifier "multiple interactions" designates that the annotated interaction is comprised of a complex set of reactions and/or regulatory events, possibly involving additional chemicals and/or gene products.
Object SymbolQualifierEvidenceWithReferenceSourceNotesOriginal Reference(s)
CYP3A4increases chemical synthesisEXP 6480464CTDCYP3A4 protein results in increased chemical synthesis of 6 beta-hydroxytestosteronePMID:12401345 PMID:20233841 PMID:20863320 PMID:21915887 PMID:23850985 PMID:26239802 PMID:26739624 PMID:27939613
CYP3A4multiple interactionsEXP 6480464CTD[[CYP3A4 protein co-treated with NADP] results in increased oxidation of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone; [CYP3A4 mRNA results in increased metabolism of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone; [CYP3A4 protein results in increased hydroxylation of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone; [CYP3A4 protein results in increased metabolism of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone; [Meclizine results in decreased activity of CYP3A4 protein] which results in decreased chemical synthesis of 6 beta-hydroxytestosterone; erdafitinib inhibits the reaction [[CYP3A4 protein results in increased hydroxylation of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone]; fipronil promotes the reaction [[CYP3A4 protein results in increased metabolism of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone]; Ketoconazole inhibits the reaction [[CYP3A4 protein results in increased hydroxylation of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone]; Ketoconazole inhibits the reaction [CYP3A4 protein results in increased chemical synthesis of 6 beta-hydroxytestosterone]; NADP deficiency inhibits the reaction [erdafitinib inhibits the reaction [[CYP3A4 protein results in increased hydroxylation of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone]]; notopterol inhibits the reaction [[CYP3A4 protein results in increased metabolism of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone]; obeticholic acid inhibits the reaction [CYP3A4 protein results in increased chemical synthesis of 6 beta-hydroxytestosterone]; Troleandomycin inhibits the reaction [CYP3A4 protein results in increased chemical synthesis of 6 beta-hydroxytestosterone]; Verapamil inhibits the reaction [CYP3A4 protein results in increased chemical synthesis of 6 beta-hydroxytestosterone]PMID:16595712 PMID:17084830 PMID:19135037 PMID:20233841 PMID:20863320 PMID:21915887 PMID:26239802 PMID:27939613 PMID:28238727 PMID:29555536 PMID:30914192 PMID:31102695 PMID:32198085 PMID:34189909 PMID:35366062 PMID:35748891
CYP3A4increases chemical synthesisISOCyp3a2 (Rattus norvegicus)6480464CTDCYP3A4 protein results in increased chemical synthesis of 6 beta-hydroxytestosteronePMID:27836570 PMID:31870919
CYP3A4multiple interactionsISOCyp3a2 (Rattus norvegicus)6480464CTD[CYP3A4 protein results in increased metabolism of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone; isobavachalcone inhibits the reaction [[CYP3A4 protein results in increased metabolism of Testosterone] which results in increased chemical synthesis of 6 beta-hydroxytestosterone]PMID:31870919
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