Título : 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 |
Autor : Marroquí, Laura Martínez-Pinna, Juan Castellano-Muñoz, Manuel Santos, Reinaldo S. dos Medina-Gali, Regla M. Soriano, Sergi Quesada, Iván Gustafsson, Jan-Ake Encinar, José A. Nadal, Ángel |
Editor : ELSEVIER |
Departamento: Departamentos de la UMH::Fisiología |
Fecha de publicación: 2021-02 |
URI : https://hdl.handle.net/11000/38949 |
Resumen :
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+ (KATP) 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.
Journal
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Palabras clave/Materias: Bisphenol Islet of Langerhans Endocrine Disrupting Chemicals Estrogen Receptors Molecular Dynamics Simulation |
Tipo de documento : info:eu-repo/semantics/article |
Derechos de acceso: info:eu-repo/semantics/openAccess Attribution-NonCommercial-NoDerivatives 4.0 Internacional |
DOI : https://doi.org/10.1016/j.chemosphere.2020.129051 |
Publicado en: Chemosphere, Vol. 265 (2021) |
Aparece en las colecciones: Artículos Fisiología
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