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The Islet Estrogen Receptor-α Is Induced by Hyperglycemia and Protects Against Oxidative Stress-Induced Insulin-Deficient Diabetes

The female steroid, 17β-estradiol (E2), is important for pancreatic β-cell function and acts via at least three estrogen receptors (ER), ERα, ERβ, and the G-protein coupled ER (GPER). Using a pancreas-specific ERα knockout mouse generated using the Cre-lox-P system and a Pdx1-Cre transgenic line (PE...

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Autores principales: Kilic, Gamze, Alvarez-Mercado, Ana I., Zarrouki, Bader, Opland, Darren, Liew, Chong Wee, Alonso, Laura C., Myers, Martin G., Jonas, Jean-Christophe, Poitout, Vincent, Kulkarni, Rohit N., Mauvais-Jarvis, Franck
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3912162/
https://www.ncbi.nlm.nih.gov/pubmed/24498408
http://dx.doi.org/10.1371/journal.pone.0087941
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author Kilic, Gamze
Alvarez-Mercado, Ana I.
Zarrouki, Bader
Opland, Darren
Liew, Chong Wee
Alonso, Laura C.
Myers, Martin G.
Jonas, Jean-Christophe
Poitout, Vincent
Kulkarni, Rohit N.
Mauvais-Jarvis, Franck
author_facet Kilic, Gamze
Alvarez-Mercado, Ana I.
Zarrouki, Bader
Opland, Darren
Liew, Chong Wee
Alonso, Laura C.
Myers, Martin G.
Jonas, Jean-Christophe
Poitout, Vincent
Kulkarni, Rohit N.
Mauvais-Jarvis, Franck
author_sort Kilic, Gamze
collection PubMed
description The female steroid, 17β-estradiol (E2), is important for pancreatic β-cell function and acts via at least three estrogen receptors (ER), ERα, ERβ, and the G-protein coupled ER (GPER). Using a pancreas-specific ERα knockout mouse generated using the Cre-lox-P system and a Pdx1-Cre transgenic line (PERαKO(−/−)), we previously reported that islet ERα suppresses islet glucolipotoxicity and prevents β-cell dysfunction induced by high fat feeding. We also showed that E2 acts via ERα to prevent β-cell apoptosis in vivo. However, the contribution of the islet ERα to β-cell survival in vivo, without the contribution of ERα in other tissues is still unclear. Using the PERαKO(−/−) mouse, we show that ERα mRNA expression is only decreased by 20% in the arcuate nucleus of the hypothalamus, without a parallel decrease in the VMH, making it a reliable model of pancreas-specific ERα elimination. Following exposure to alloxan-induced oxidative stress in vivo, female and male PERαKO(−/−) mice exhibited a predisposition to β-cell destruction and insulin deficient diabetes. In male PERαKO(−/−) mice, exposure to E2 partially prevented alloxan-induced β-cell destruction and diabetes. ERα mRNA expression was induced by hyperglycemia in vivo in islets from young mice as well as in cultured rat islets. The induction of ERα mRNA by hyperglycemia was retained in insulin receptor-deficient β-cells, demonstrating independence from direct insulin regulation. These findings suggest that induction of ERα expression acts to naturally protect β-cells against oxidative injury.
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spelling pubmed-39121622014-02-04 The Islet Estrogen Receptor-α Is Induced by Hyperglycemia and Protects Against Oxidative Stress-Induced Insulin-Deficient Diabetes Kilic, Gamze Alvarez-Mercado, Ana I. Zarrouki, Bader Opland, Darren Liew, Chong Wee Alonso, Laura C. Myers, Martin G. Jonas, Jean-Christophe Poitout, Vincent Kulkarni, Rohit N. Mauvais-Jarvis, Franck PLoS One Research Article The female steroid, 17β-estradiol (E2), is important for pancreatic β-cell function and acts via at least three estrogen receptors (ER), ERα, ERβ, and the G-protein coupled ER (GPER). Using a pancreas-specific ERα knockout mouse generated using the Cre-lox-P system and a Pdx1-Cre transgenic line (PERαKO(−/−)), we previously reported that islet ERα suppresses islet glucolipotoxicity and prevents β-cell dysfunction induced by high fat feeding. We also showed that E2 acts via ERα to prevent β-cell apoptosis in vivo. However, the contribution of the islet ERα to β-cell survival in vivo, without the contribution of ERα in other tissues is still unclear. Using the PERαKO(−/−) mouse, we show that ERα mRNA expression is only decreased by 20% in the arcuate nucleus of the hypothalamus, without a parallel decrease in the VMH, making it a reliable model of pancreas-specific ERα elimination. Following exposure to alloxan-induced oxidative stress in vivo, female and male PERαKO(−/−) mice exhibited a predisposition to β-cell destruction and insulin deficient diabetes. In male PERαKO(−/−) mice, exposure to E2 partially prevented alloxan-induced β-cell destruction and diabetes. ERα mRNA expression was induced by hyperglycemia in vivo in islets from young mice as well as in cultured rat islets. The induction of ERα mRNA by hyperglycemia was retained in insulin receptor-deficient β-cells, demonstrating independence from direct insulin regulation. These findings suggest that induction of ERα expression acts to naturally protect β-cells against oxidative injury. Public Library of Science 2014-02-03 /pmc/articles/PMC3912162/ /pubmed/24498408 http://dx.doi.org/10.1371/journal.pone.0087941 Text en © 2014 Kilic et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kilic, Gamze
Alvarez-Mercado, Ana I.
Zarrouki, Bader
Opland, Darren
Liew, Chong Wee
Alonso, Laura C.
Myers, Martin G.
Jonas, Jean-Christophe
Poitout, Vincent
Kulkarni, Rohit N.
Mauvais-Jarvis, Franck
The Islet Estrogen Receptor-α Is Induced by Hyperglycemia and Protects Against Oxidative Stress-Induced Insulin-Deficient Diabetes
title The Islet Estrogen Receptor-α Is Induced by Hyperglycemia and Protects Against Oxidative Stress-Induced Insulin-Deficient Diabetes
title_full The Islet Estrogen Receptor-α Is Induced by Hyperglycemia and Protects Against Oxidative Stress-Induced Insulin-Deficient Diabetes
title_fullStr The Islet Estrogen Receptor-α Is Induced by Hyperglycemia and Protects Against Oxidative Stress-Induced Insulin-Deficient Diabetes
title_full_unstemmed The Islet Estrogen Receptor-α Is Induced by Hyperglycemia and Protects Against Oxidative Stress-Induced Insulin-Deficient Diabetes
title_short The Islet Estrogen Receptor-α Is Induced by Hyperglycemia and Protects Against Oxidative Stress-Induced Insulin-Deficient Diabetes
title_sort islet estrogen receptor-α is induced by hyperglycemia and protects against oxidative stress-induced insulin-deficient diabetes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3912162/
https://www.ncbi.nlm.nih.gov/pubmed/24498408
http://dx.doi.org/10.1371/journal.pone.0087941
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