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双酚 S 和双酚 F 通过雌激素受体 ERβ 介导的途径改变小鼠胰腺β 细胞离子通道的表达和活性以及胰岛素释放。

Bisphenol-S and Bisphenol-F alter mouse pancreatic β-cell ion channel expression and activity and insulin release through an estrogen receptor ERβ mediated pathway.

机构信息

Instituto de Investigación, Desarrollo e Innovación en Biotecnología Sanitaria de Elche (IDiBE), Universitas Miguel Hernández, Elche, Spain; Centro de Investigación Biomédica en Red de Diabetes y Enfermedades Metabólicas Asociadas (CIBERDEM), Spain.

Instituto de Investigación, Desarrollo e Innovación en Biotecnología Sanitaria de Elche (IDiBE), Universitas Miguel Hernández, Elche, Spain; Departamento de Fisiología, Genética y Microbiología, Universidad de Alicante, Alicante, Spain.

出版信息

Chemosphere. 2021 Feb;265:129051. doi: 10.1016/j.chemosphere.2020.129051. Epub 2020 Nov 20.

Abstract

Bisphenol-S (BPS) and Bisphenol-F (BPF) are current Bisphenol-A (BPA) substitutes. Here we used pancreatic β-cells from wild type (WT) and estrogen receptor β (ERβ) knockout (BERKO) mice to investigate the effects of BPS and BPF on insulin secretion, and the expression and activity of ion channels involved in β-cell function. BPS or BPF rapidly increased insulin release and diminished ATP-sensitive K (K) channel activity. Similarly, 48 h treatment with BPS or BPF enhanced insulin release and decreased the expression of several ion channel subunits in β-cells from WT mice, yet no effects were observed in cells from BERKO mice. PaPE-1, a ligand designed to preferentially trigger extranuclear-initiated ER pathways, mimicked the effects of bisphenols, suggesting the involvement of extranuclear-initiated ERβ pathways. Molecular dynamics simulations indicated differences in ERβ ligand-binding domain dimer stabilization and solvation free energy among different bisphenols and PaPE-1. Our data suggest a mode of action involving ERβ whose activation alters three key cellular events in β-cell, namely ion channel expression and activity, and insulin release. These results may help to improve the hazard identification of bisphenols.

摘要

双酚 S(BPS)和双酚 F(BPF)是目前双酚 A(BPA)的替代品。在这里,我们使用野生型(WT)和雌激素受体 β(ERβ)敲除(BERKO)小鼠的胰腺β细胞来研究 BPS 和 BPF 对胰岛素分泌的影响,以及参与β细胞功能的离子通道的表达和活性。BPS 或 BPF 可迅速增加胰岛素释放并降低 ATP 敏感性 K(K)通道活性。同样,用 BPS 或 BPF 处理 48 小时可增强 WT 小鼠β细胞的胰岛素释放并降低几种离子通道亚基的表达,但在 BERKO 小鼠的细胞中未观察到这些作用。PaPE-1 是一种设计用于优先触发核外起始的 ER 途径的配体,模拟了双酚类物质的作用,表明涉及核外起始的 ERβ 途径。分子动力学模拟表明,不同双酚类物质和 PaPE-1 之间 ERβ 配体结合域二聚体稳定化和溶剂化自由能存在差异。我们的数据表明了一种作用模式,涉及激活后改变β细胞中三个关键细胞事件的 ERβ,即离子通道的表达和活性以及胰岛素的释放。这些结果可能有助于改善对双酚类物质的危害识别。

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