Equol


Curated chemical-gene interactions from CTD
Entrez gene IDGene symbolInteraction typeReference
1081 CGA Decreases expression PMID:23220561
10926 DBF4 Decreases expression PMID:16865672
1111 CHEK1 Decreases expression PMID:16865672
1583 CYP11A1 Decreases expression PMID:26876617
1586 CYP17A1 Decreases expression PMID:26876617
1588 CYP19A1 Decreases expression PMID:26876617
1676 DFFA Increases activity PMID:18973749
1846 DUSP4 Decreases expression PMID:16865672
2099 ESR1 Increases activity PMID:15876408; PMID:20362049; PMID:20435135; PMID:16118406
2099 ESR1 Increases expression PMID:23220561
2100 ESR2 Increases activity PMID:15084758; PMID:16118406
251 ALPG Increases expression PMID:15993745
27347 STK39 Decreases expression PMID:16865672
2798 GNRHR Decreases expression PMID:23220561
3480 IGF1R Decreases expression PMID:16865672
354 KLK3 Decreases expression PMID:16865672
3565 IL4 Increases expression PMID:16108819
3972 LHB Decreases expression PMID:23220561
4173 MCM4 Decreases expression PMID:16865672
4199 ME1 Increases expression PMID:16865672
4824 NKX3-1 Decreases expression PMID:16865672
4846 NOS3 Increases activity PMID:16840783; PMID:21300668
5558 PRIM2 Decreases expression PMID:16865672
5594 MAPK1 Increases activity PMID:19427779
5595 MAPK3 Increases activity PMID:19427779
5617 PRL Increases expression PMID:23220561
650 BMP2 Increases expression PMID:39743035
7031 TFF1 Increases expression PMID:16965913
7057 THBS1 Decreases expression PMID:16865672
7366 UGT2B15 Increases expression PMID:16865672
7367 UGT2B17 Increases expression PMID:16865672
836 CASP3 Increases activity PMID:18973749
860 RUNX2 Increases expression PMID:39743035
890 CCNA2 Decreases expression PMID:16865672
9133 CCNB2 Decreases expression PMID:16865672
994 CDC25B Decreases expression PMID:16865672
995 CDC25C Decreases expression PMID:16865672

DISCLAIMER

We have built a comprehensive resource which compiles potential endocrine disrupting chemicals (EDCs) based on the observed adverse effects or endocrine-mediated endpoints in published experiments on humans or rodents to support basic research. We are not responsible for any errors or omissions in the published research articles or supporting literature on potential EDCs compiled in this resource. Users are advised to exercise their own judgement on the weight of evidence for potential EDCs compiled in this resource. Importantly, our sole goal to build this resource on potential EDCs is to enable future basic research towards better understanding of the systems-level perturbations upon chemical exposure rather than influencing regulatory advice on chemical use.