Cargando…

The pathological role of advanced glycation end products-downregulated heat shock protein 60 in islet β-cell hypertrophy and dysfunction

Heat shock protein 60 (HSP60) is a mitochondrial chaperone. Advanced glycation end products (AGEs) have been shown to interfere with the β-cell function. We hypothesized that AGEs induced β-cell hypertrophy and dysfunction through a HSP60 dysregulation pathway during the stage of islet/β-cell hypert...

Descripción completa

Detalles Bibliográficos
Autores principales: Guan, Siao-Syun, Sheu, Meei-Ling, Yang, Rong-Sen, Chan, Ding-Cheng, Wu, Cheng-Tien, Yang, Ting-Hua, Chiang, Chih-Kang, Liu, Shing-Hwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5029611/
https://www.ncbi.nlm.nih.gov/pubmed/27056903
http://dx.doi.org/10.18632/oncotarget.8604
_version_ 1782454540426018816
author Guan, Siao-Syun
Sheu, Meei-Ling
Yang, Rong-Sen
Chan, Ding-Cheng
Wu, Cheng-Tien
Yang, Ting-Hua
Chiang, Chih-Kang
Liu, Shing-Hwa
author_facet Guan, Siao-Syun
Sheu, Meei-Ling
Yang, Rong-Sen
Chan, Ding-Cheng
Wu, Cheng-Tien
Yang, Ting-Hua
Chiang, Chih-Kang
Liu, Shing-Hwa
author_sort Guan, Siao-Syun
collection PubMed
description Heat shock protein 60 (HSP60) is a mitochondrial chaperone. Advanced glycation end products (AGEs) have been shown to interfere with the β-cell function. We hypothesized that AGEs induced β-cell hypertrophy and dysfunction through a HSP60 dysregulation pathway during the stage of islet/β-cell hypertrophy of type-2-diabetes. We investigated the role of HSP60 in AGEs-induced β-cell hypertrophy and dysfunction using the models of diabetic mice and cultured β-cells. Hypertrophy, increased levels of p27(Kip1), AGEs, and receptor for AGEs (RAGE), and decreased levels of HSP60, insulin, and ATP content were obviously observed in pancreatic islets of 12-week-old db/db diabetic mice. Low-concentration AGEs significantly induced the cell hypertrophy, increased the p27(Kip1) expression, and decreased the HSP60 expression, insulin secretion, and ATP content in cultured β-cells, which could be reversed by RAGE neutralizing antibody. HSP60 overexpression significantly reversed AGEs-induced hypertrophy, dysfunction, and ATP reduction in β-cells. Oxidative stress was also involved in the AGEs-decreased HSP60 expression in β-cells. Pancreatic sections from diabetic patient showed islet hypertrophy, increased AGEs level, and decreased HSP60 level as compared with normal subject. These findings highlight a novel mechanism by which a HSP60-correlated signaling pathway contributes to the AGEs-RAGE axis-induced β-cell hypertrophy and dysfunction under diabetic hyperglycemia.
format Online
Article
Text
id pubmed-5029611
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-50296112016-09-29 The pathological role of advanced glycation end products-downregulated heat shock protein 60 in islet β-cell hypertrophy and dysfunction Guan, Siao-Syun Sheu, Meei-Ling Yang, Rong-Sen Chan, Ding-Cheng Wu, Cheng-Tien Yang, Ting-Hua Chiang, Chih-Kang Liu, Shing-Hwa Oncotarget Research Paper: Pathology Heat shock protein 60 (HSP60) is a mitochondrial chaperone. Advanced glycation end products (AGEs) have been shown to interfere with the β-cell function. We hypothesized that AGEs induced β-cell hypertrophy and dysfunction through a HSP60 dysregulation pathway during the stage of islet/β-cell hypertrophy of type-2-diabetes. We investigated the role of HSP60 in AGEs-induced β-cell hypertrophy and dysfunction using the models of diabetic mice and cultured β-cells. Hypertrophy, increased levels of p27(Kip1), AGEs, and receptor for AGEs (RAGE), and decreased levels of HSP60, insulin, and ATP content were obviously observed in pancreatic islets of 12-week-old db/db diabetic mice. Low-concentration AGEs significantly induced the cell hypertrophy, increased the p27(Kip1) expression, and decreased the HSP60 expression, insulin secretion, and ATP content in cultured β-cells, which could be reversed by RAGE neutralizing antibody. HSP60 overexpression significantly reversed AGEs-induced hypertrophy, dysfunction, and ATP reduction in β-cells. Oxidative stress was also involved in the AGEs-decreased HSP60 expression in β-cells. Pancreatic sections from diabetic patient showed islet hypertrophy, increased AGEs level, and decreased HSP60 level as compared with normal subject. These findings highlight a novel mechanism by which a HSP60-correlated signaling pathway contributes to the AGEs-RAGE axis-induced β-cell hypertrophy and dysfunction under diabetic hyperglycemia. Impact Journals LLC 2016-04-05 /pmc/articles/PMC5029611/ /pubmed/27056903 http://dx.doi.org/10.18632/oncotarget.8604 Text en Copyright: © 2016 Guan et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper: Pathology
Guan, Siao-Syun
Sheu, Meei-Ling
Yang, Rong-Sen
Chan, Ding-Cheng
Wu, Cheng-Tien
Yang, Ting-Hua
Chiang, Chih-Kang
Liu, Shing-Hwa
The pathological role of advanced glycation end products-downregulated heat shock protein 60 in islet β-cell hypertrophy and dysfunction
title The pathological role of advanced glycation end products-downregulated heat shock protein 60 in islet β-cell hypertrophy and dysfunction
title_full The pathological role of advanced glycation end products-downregulated heat shock protein 60 in islet β-cell hypertrophy and dysfunction
title_fullStr The pathological role of advanced glycation end products-downregulated heat shock protein 60 in islet β-cell hypertrophy and dysfunction
title_full_unstemmed The pathological role of advanced glycation end products-downregulated heat shock protein 60 in islet β-cell hypertrophy and dysfunction
title_short The pathological role of advanced glycation end products-downregulated heat shock protein 60 in islet β-cell hypertrophy and dysfunction
title_sort pathological role of advanced glycation end products-downregulated heat shock protein 60 in islet β-cell hypertrophy and dysfunction
topic Research Paper: Pathology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5029611/
https://www.ncbi.nlm.nih.gov/pubmed/27056903
http://dx.doi.org/10.18632/oncotarget.8604
work_keys_str_mv AT guansiaosyun thepathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT sheumeeiling thepathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT yangrongsen thepathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT chandingcheng thepathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT wuchengtien thepathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT yangtinghua thepathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT chiangchihkang thepathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT liushinghwa thepathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT guansiaosyun pathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT sheumeeiling pathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT yangrongsen pathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT chandingcheng pathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT wuchengtien pathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT yangtinghua pathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT chiangchihkang pathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction
AT liushinghwa pathologicalroleofadvancedglycationendproductsdownregulatedheatshockprotein60inisletbcellhypertrophyanddysfunction