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PMID: 27542279 已发表 · aheadofprint 英语

Conditional ablation of HDAC3 in islet beta cells results in glucose intolerance and enhanced susceptibility to STZ-induced diabetes.

Oncotarget ·0000-00-00

Chen Wen-Bin, Gao Ling, Wang Jie, Wang Yan-Gang, Dong Zheng, Zhao Jiajun, Mi Qing-Sheng, Zhou Li

摘要

Histone deacetylases (HDACs) are enzymes that regulate gene expression by modifying chromatin structure through removal of acetyl groups from target histones or non-histone proteins. Previous in vitro studies suggest that HDACs may be novel pharmacological targets in immune-mediated islet β-cell destruction. However, the role of specific HDAC in islet β-cell development and function remain unclear. Here, we generated a conditional islet β-cells specific HDAC3 deletion mouse model to determine the consequences of HDAC3 depletion on islet β-cell differentiation, maintenance and function. Islet morphology, insulin secretion, glucose tolerance, and multiple low-dose streptozotocin (STZ)-induced diabetes incidence were evaluated and compared between HDAC3 knockout and wild type littermate controls. Mice with β-cell-specific HDAC3 deletion displayed decreased pancreatic insulin content, disrupted glucose-stimulated insulin secretion, with intermittent spontaneous diabetes and dramatically enhanced susceptibility to STZ-induced diabetes. Furthermore, islet β-cell line, MIN6 cells with siRNA-mediated HDAC3 silence, showed decreased insulin gene transcription, which was mediated, at least partially, through the upregulation of suppressors of cytokine signaling 3 (SOCS3). These results indicate the critical role of HDAC3 in normal β-cell differentiation, maintenance and function.

关键词
HDAC3 Pathology Section autoimmune diabetes glucose tolerance insulin knockout
文献信息
期刊
Oncotarget
期刊简称
Oncotarget
发表日期
0000-00-00
收录日期
2016-08-19
更新日期
2016-08-19
语言
英语
国家/地区
United States
NLM ID
101532965
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