Title: G protein-coupled estrogen receptor activation by bisphenol-A disrupts the protection from apoptosis conferred by the estrogen receptors ERα and ERβ in pancreatic beta cells |
Authors: Babiloni-Chust, Ignacio dos Santos, Reinaldo S. Medina-Gali, Regla M. Pérez-Serna, Atenea A. Encinar, José Antonio Martínez-Pinna, Juan Gustafsson, Jan-Ake Marroquí, Laura Nadal, Ángel |
Editor: Elsevier |
Department: Departamentos de la UMH::Fisiología |
Issue Date: 2022-06 |
URI: https://hdl.handle.net/11000/38003 |
Abstract:
17β-estradiol protects pancreatic β-cells from apoptosis via the estrogen receptors ERα, ERβ and GPER.
Conversely, the endocrine disruptor bisphenol-A (BPA), which exerts multiple effects in this cell type via the
same estrogen receptors, increased basal apoptosis. The molecular-initiated events that trigger these opposite
actions have yet to be identified. We demonstrated that combined genetic downregulation and pharmacological
blockade of each estrogen receptor increased apoptosis to a different extent. The increase in apoptosis induced by
BPA was diminished by the pharmacological blockade or the genetic silencing of GPER, and it was partially
reproduced by the GPER agonist G1. BPA and G1-induced apoptosis were abolished upon pharmacological inhibition,
silencing of ERα and ERβ, or in dispersed islet cells from ERβ knockout (BERKO) mice. However, the
ERα and ERβ agonists PPT and DPN, respectively, had no effect on beta cell viability. To exert their biological
actions, ERα and ERβ form homodimers and heterodimers. Molecular dynamics simulations together with
proximity ligand assays and coimmunoprecipitation experiments indicated that the interaction of BPA with ERα
and ERβ as well as GPER activation by G1 decreased ERαβ heterodimers. We propose that ERαβ heterodimers
play an antiapoptotic role in beta cells and that BPA- and G1-induced decreases in ERαβ heterodimers lead to
beta cell apoptosis. Unveiling how different estrogenic chemicals affect the crosstalk among estrogen receptors
should help to identify diabetogenic endocrine disruptors.
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Keywords/Subjects: Apoptosis Bisphenol-A Endocrine disruptors GPER/GPR30 Heterodimers 17β-estradiol Estrogen receptors |
Type of document: info:eu-repo/semantics/article |
Access rights: info:eu-repo/semantics/openAccess Attribution-NonCommercial-NoDerivatives 4.0 Internacional |
DOI: https://doi.org/10.1016/j.envint.2022.107250 |
Published in: Environment International, Vol. 164 (2022) |
Appears in Collections: Artículos Fisiología
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