首页> 外文期刊>Environmental health perspectives. >Differential in Vitro Biological Action, Coregulator Interactions, and Molecular Dynamic Analysis of Bisphenol A (BPA), BPAF, and BPS Ligand–ER[... formula ...] Complexes
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Differential in Vitro Biological Action, Coregulator Interactions, and Molecular Dynamic Analysis of Bisphenol A (BPA), BPAF, and BPS Ligand–ER[... formula ...] Complexes

机译:双酚A(BPA),BPAF和BPS配体-ER [...公式...]配合物的体外差异生物作用,共调节剂相互作用和分子动力学分析

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Background: Bisphenol A (BPA) is an endocrine-disrupting chemical (EDC) that might be harmful to human health. Recently, there has been widespread usage of bisphenol chemicals (BPs), such as bisphenol AF (BPAF) and bisphenol S (BPS), as replacements for BPA. However, the potential biological actions, toxicity, and the molecular mechanism of these compounds are still poorly understood. Objectives: Our objective was to examine the estrogenic effects of BPA, BPAF, and BPS and the molecular mechanisms of action in the estrogen receptor alpha (ERα) complex. Methods: In vitro cell models were used to compare the estrogenic effects of BPA, BPAF, and BPS to estrogen. Microarray Assay for Real-Time Coregulator-Nuclear receptor Interaction (MARCoNI) analysis was used to identify coregulators of BPA, BPAF, and BPS, and molecular dynamic (MD) simulations were used to determine the compounds binding in the ERα?complex. Results: We demonstrated that BPA and BPAF have agonistic activity for both ERα and ERβ, but BPS has ERα-selective specificity. We concluded that coregulators were differentially recruited in the presence of BPA, BPAF, or BPS. Interestingly, BPS recruited more corepressors when compared to BPA and BPAF. From a series of MD analysis, we concluded that BPA, BPAF, and BPS can bind to the ER–ligand-binding domain with differing energetics and conformations. In addition, the binding surface of coregulator interactions on ERα was characterized for the BPA, BPAF, and BPS complexes. Conclusion: These findings further our understanding of the molecular mechanisms of EDCs, such as BPs, in ER-mediated transcriptional activation, biological activity, and their effects on physiological functions in human health. https://doi.org/10.1289/EHP2505.
机译:背景:双酚A(BPA)是一种破坏内分泌的化学物质(EDC),可能对人体健康有害。近来,已经广泛使用诸如双酚AF(BPAF)和双酚S(BPS)的双酚化学品(BPs)代替BPA。但是,这些化合物的潜在生物学作用,毒性和分子机理仍然知之甚少。目的:我们的目的是检查BPA,BPAF和BPS的雌激素作用以及雌激素受体α(ERα)复合物中的作用分子机制。方法:使用体外细胞模型比较BPA,BPAF和BPS对雌激素的雌激素作用。用于实时Coregulator-核受体相互作用的微阵列分析(MARCoNI)分析用于识别BPA,BPAF和BPS的coregulator,并使用分子动力学(MD)模拟来确定化合物在ERα?复合物中的结合。结果:我们证明BPA和BPAF对ERα和ERβ均具有激动活性,但BPS具有ERα选择性特异性。我们得出的结论是,在存在BPA,BPAF或BPS的情况下,共调治者的招募有所不同。有趣的是,与BPA和BPAF相比,BPS招募了更多的镇静剂。通过一系列MD分析,我们得出结论,BPA,BPAF和BPS可以以不同的能量和构象与ER-配体结合域结合。此外,针对BPA,BPAF和BPS配合物,表征了调节剂在ERα上的相互作用的结合表面。结论:这些发现使我们进一步了解了EDCs,例如BPs,在ER介导的转录激活,生物活性及其对人类健康中生理功能的影响中的分子机制。 https://doi.org/10.1289/EHP2505。

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