Galaxolide


Curated chemical-gene interactions from CTD
Entrez gene IDGene symbolInteraction typeReference
1066 CES1 Decreases activity PMID:22489002
10746 MAP3K2 Increases expression PMID:37797914
131118 DNAJC19 Decreases expression PMID:37797914
1586 CYP17A1 Affects activity PMID:23084589
1586 CYP17A1 Decreases expression PMID:37797914
1717 DHCR7 Decreases expression PMID:37797914
1956 EGFR Increases expression PMID:34687775
2099 ESR1 Increases activity PMID:17762842
2100 ESR2 Decreases activity PMID:15537743
2488 FSHB Increases expression PMID:37797914
2492 FSHR Increases expression PMID:37797914
2798 GNRHR Increases expression PMID:37797914
3091 HIF1A Increases expression PMID:34687775
3569 IL6 Increases expression PMID:34687775
367 AR Decreases activity PMID:15537743; PMID:17762842
3717 JAK2 Increases expression PMID:34687775
3972 LHB Increases expression PMID:37797914
406952 MIR17 Decreases expression PMID:34687775
406980 MIR19B1 Decreases expression PMID:34687775
406982 MIR20A Decreases expression PMID:34687775
407048 MIR92A1 Decreases expression PMID:34687775
4314 MMP3 Increases expression PMID:34687775
4318 MMP9 Increases expression PMID:34687775
5241 PGR Decreases activity PMID:15537743
56155 TEX14 Decreases expression PMID:37797914
6591 SNAI2 Increases expression PMID:34687775
6615 SNAI1 Increases expression PMID:34687775
6647 SOD1 Decreases expression PMID:37797914
6716 SRD5A2 Decreases expression PMID:37797914
6774 STAT3 Increases expression PMID:34687775
6935 ZEB1 Increases expression PMID:34687775
71083 DMRTC1C1 Increases expression PMID:37797914
7422 VEGFA Increases expression PMID:34687775
7431 VIM Increases expression PMID:34687775
817 CAMK2D Increases expression PMID:37797914

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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.