Diabetes Promotes Myocardial Fibrosis via AMPK/EZH2/PPAR-γ Signaling Pathway

医学 糖尿病 安普克 纤维化 EZH2型 心肌纤维化 信号转导 内科学 生物信息学 内分泌学 细胞生物学 蛋白激酶A 组蛋白 磷酸化 生物 基因 化学 生物化学
作者
Shanshan Li,Pan Lu,Zhen‐Ye Zhang,Meng-Dan Zhou,Xufei Chen,Ling‐Ling Qian,Min Dai,Juan Lu,Zhi‐Ming Yu,Shipeng Dang,Ruxing Wang
出处
期刊:Diabetes & Metabolism Journal [Korean Diabetes Association]
卷期号:48 (4): 716-729 被引量:13
标识
DOI:10.4093/dmj.2023.0031
摘要

Diabetes-induced cardiac fibrosis is one of the main mechanisms of diabetic cardiomyopathy. As a common histone methyltransferase, enhancer of zeste homolog 2 (EZH2) has been implicated in fibrosis progression in multiple organs. However, the mechanism of EZH2 in diabetic myocardial fibrosis has not been clarified. In the current study, rat and mouse diabetic model were established, the left ventricular function of rat and mouse were evaluated by echocardiography and the fibrosis of rat ventricle was evaluated by Masson staining. Primary rat ventricular fibroblasts were cultured and stimulated with high glucose (HG) in vitro. The expression of histone H3 lysine 27 (H3K27) trimethylation, EZH2, and myocardial fibrosis proteins were assayed. In STZ-induced diabetic ventricular tissues and HG-induced primary ventricular fibroblasts in vitro, H3K27 trimethylation was increased and the phosphorylation of EZH2 was reduced. Inhibition of EZH2 with GSK126 suppressed the activation, differentiation, and migration of cardiac fibroblasts as well as the overexpression of the fibrotic proteins induced by HG. Mechanical study demonstrated that HG reduced phosphorylation of EZH2 on Thr311 by inactivating AMP-activated protein kinase (AMPK), which transcriptionally inhibited peroxisome proliferator-activated receptor γ (PPAR-γ) expression to promote the fibroblasts activation and differentiation. Our data revealed an AMPK/EZH2/PPAR-γ signal pathway is involved in HG-induced cardiac fibrosis.
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