心肌能量代谢紊乱在糖尿病心肌病中的作用:从新型蛋白质翻译后修饰的角度。

IF 4.8 2区 医学 Q1 GENETICS & HEREDITY
Dongze Li, Li Zhang, Qiming Gong, Huilan Deng, Changfang Luo, Tingting Zhou, Wei Huang, Yong Xu
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引用次数: 0

摘要

糖尿病性心肌病(DbCM)是糖尿病的一种重要慢性并发症,表现为心肌肥大、纤维化和其他病理改变,严重影响心功能,增加心血管疾病和患者死亡率的风险。DbCM的心肌能量代谢紊乱,包括葡萄糖、脂肪酸、酮体和乳酸代谢,是DbCM进展的关键因素。近年来,新的蛋白质翻译后修饰(PTMs)如乳酸化、β-羟基丁基化和琥珀酰化被证明与心肌能量代谢过程密切相关,并与乙酰化一起参与心肌细胞中蛋白质活性和基因表达活性的调节。本文综述了DbCM的表观遗传发病机制,主要关注心肌能量代谢扰动和与之相关的新型PTMs。本文将详细分析这些新型PTMs在DbCM中的作用机制,以加深对DbCM病理生理的认识,并为DbCM新的治疗策略的发展奠定理论基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of myocardial energy metabolism perturbations in diabetic cardiomyopathy: from the perspective of novel protein post-translational modifications.

Diabetic cardiomyopathy (DbCM), a significant chronic complication of diabetes, manifests as myocardial hypertrophy, fibrosis, and other pathological alterations that substantially impact cardiac function and elevate the risk of cardiovascular diseases and patient mortality. Myocardial energy metabolism disturbances in DbCM, encompassing glucose, fatty acid, ketone body and lactate metabolism, are crucial factors that contribute to the progression of DbCM. In recent years, novel protein post-translational modifications (PTMs) such as lactylation, β-hydroxybutyrylation, and succinylation have been demonstrated to be intimately associated with the myocardial energy metabolism process, and in conjunction with acetylation, they participate in the regulation of protein activity and gene expression activity in cardiomyocytes. This review examines the epigenetic pathogenesis of DbCM, primarily focusing on myocardial energy metabolism perturbations and novel PTMs associated with them. It provides a detailed analysis of the mechanisms of these novel PTMs in DbCM to enhance the understanding of DbCM pathophysiology and establish a theoretical foundation for the development of new treatment strategies for DbCM.

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来源期刊
自引率
5.30%
发文量
150
期刊介绍: Clinical Epigenetics, the official journal of the Clinical Epigenetics Society, is an open access, peer-reviewed journal that encompasses all aspects of epigenetic principles and mechanisms in relation to human disease, diagnosis and therapy. Clinical trials and research in disease model organisms are particularly welcome.
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