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Cask methylation involved in the injury of insulin secretion function caused by interleukin1‐β

Islet inflammation severely impairs pancreatic β‐cell function, but the specific mechanisms are still unclear. Interleukin1‐β (IL‐1β), an essential inflammatory factor, exerts a vital role in multiple physio‐pathologic processes, including diabetes. Calcium/calmodulin‐dependent serine protein kinase...

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Autores principales: Wang, Tian‐yuan, Liu, Xing‐jing, Xie, Jin‐yang, Yuan, Qing‐zhao, Wang, Yao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7753871/
https://www.ncbi.nlm.nih.gov/pubmed/33188567
http://dx.doi.org/10.1111/jcmm.16041
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author Wang, Tian‐yuan
Liu, Xing‐jing
Xie, Jin‐yang
Yuan, Qing‐zhao
Wang, Yao
author_facet Wang, Tian‐yuan
Liu, Xing‐jing
Xie, Jin‐yang
Yuan, Qing‐zhao
Wang, Yao
author_sort Wang, Tian‐yuan
collection PubMed
description Islet inflammation severely impairs pancreatic β‐cell function, but the specific mechanisms are still unclear. Interleukin1‐β (IL‐1β), an essential inflammatory factor, exerts a vital role in multiple physio‐pathologic processes, including diabetes. Calcium/calmodulin‐dependent serine protein kinase (CASK) is an important regulator especially in insulin secretion process. This study aims to unveil the function of CASK in IL‐1β–induced insulin secretion dysfunction and the possible mechanism thereof. Islets of Sprague‐Dawley (SD) rats and INS‐1 cells stimulated with IL‐1β were utilized as models of chronic inflammation. Insulin secretion function associated with Cask and DNA methyltransferases (DNMT) expression were assessed. The possible mechanisms of IL‐1β‐induced pancreatic β‐cell dysfunction were also explored. In this study, CASK overexpression effectively improved IL‐1β‐induced islet β‐cells dysfunction, increased insulin secretion. DNA methyltransferases and the level of methylation in the promoter region of Cask were elevated after IL‐1β administration. Methyltransferase inhibitor 5‐Aza‐2’‐deoxycytidine (5‐Aza‐dC) and si‐DNMTs partially up‐regulated CASK expression and reversed potassium stimulated insulin secretion (KSIS) and glucose‐stimulated insulin secretion (GSIS) function under IL‐1β treatment in INS‐1 and rat islets. These results reveal a previously unknown effect of IL‐1β on insulin secretion dysfunction and demonstrate a novel pathway for Cask silencing based on activation of DNA methyltransferases via inducible nitric oxide synthase (iNOS) and modification of gene promoter methylation.
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spelling pubmed-77538712020-12-23 Cask methylation involved in the injury of insulin secretion function caused by interleukin1‐β Wang, Tian‐yuan Liu, Xing‐jing Xie, Jin‐yang Yuan, Qing‐zhao Wang, Yao J Cell Mol Med Original Articles Islet inflammation severely impairs pancreatic β‐cell function, but the specific mechanisms are still unclear. Interleukin1‐β (IL‐1β), an essential inflammatory factor, exerts a vital role in multiple physio‐pathologic processes, including diabetes. Calcium/calmodulin‐dependent serine protein kinase (CASK) is an important regulator especially in insulin secretion process. This study aims to unveil the function of CASK in IL‐1β–induced insulin secretion dysfunction and the possible mechanism thereof. Islets of Sprague‐Dawley (SD) rats and INS‐1 cells stimulated with IL‐1β were utilized as models of chronic inflammation. Insulin secretion function associated with Cask and DNA methyltransferases (DNMT) expression were assessed. The possible mechanisms of IL‐1β‐induced pancreatic β‐cell dysfunction were also explored. In this study, CASK overexpression effectively improved IL‐1β‐induced islet β‐cells dysfunction, increased insulin secretion. DNA methyltransferases and the level of methylation in the promoter region of Cask were elevated after IL‐1β administration. Methyltransferase inhibitor 5‐Aza‐2’‐deoxycytidine (5‐Aza‐dC) and si‐DNMTs partially up‐regulated CASK expression and reversed potassium stimulated insulin secretion (KSIS) and glucose‐stimulated insulin secretion (GSIS) function under IL‐1β treatment in INS‐1 and rat islets. These results reveal a previously unknown effect of IL‐1β on insulin secretion dysfunction and demonstrate a novel pathway for Cask silencing based on activation of DNA methyltransferases via inducible nitric oxide synthase (iNOS) and modification of gene promoter methylation. John Wiley and Sons Inc. 2020-11-14 2020-12 /pmc/articles/PMC7753871/ /pubmed/33188567 http://dx.doi.org/10.1111/jcmm.16041 Text en © 2020 The Authors. Journal of Cellular and Molecular Medicine published byFoundation for Cellular and Molecular Medicine and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Wang, Tian‐yuan
Liu, Xing‐jing
Xie, Jin‐yang
Yuan, Qing‐zhao
Wang, Yao
Cask methylation involved in the injury of insulin secretion function caused by interleukin1‐β
title Cask methylation involved in the injury of insulin secretion function caused by interleukin1‐β
title_full Cask methylation involved in the injury of insulin secretion function caused by interleukin1‐β
title_fullStr Cask methylation involved in the injury of insulin secretion function caused by interleukin1‐β
title_full_unstemmed Cask methylation involved in the injury of insulin secretion function caused by interleukin1‐β
title_short Cask methylation involved in the injury of insulin secretion function caused by interleukin1‐β
title_sort cask methylation involved in the injury of insulin secretion function caused by interleukin1‐β
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7753871/
https://www.ncbi.nlm.nih.gov/pubmed/33188567
http://dx.doi.org/10.1111/jcmm.16041
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