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线粒体钙蛋白酶-1破坏1型糖尿病心脏中的ATP合酶并诱导超氧化物生成:一种导致糖尿病心肌病的新机制。

Mitochondrial Calpain-1 Disrupts ATP Synthase and Induces Superoxide Generation in Type 1 Diabetic Hearts: A Novel Mechanism Contributing to Diabetic Cardiomyopathy.

作者信息

Ni Rui, Zheng Dong, Xiong Sidong, Hill David J, Sun Tao, Gardiner Richard B, Fan Guo-Chang, Lu Yanrong, Abel E Dale, Greer Peter A, Peng Tianqing

机构信息

Institutes of Biology and Medical Sciences, Soochow University, Suzhou, Jiangsu Province, China Department of Medicine, Lawson Health Research Institute, University of Western Ontario, London, Ontario, Canada Department of Pathology, Lawson Health Research Institute, University of Western Ontario, London, Ontario, Canada.

Institutes of Biology and Medical Sciences, Soochow University, Suzhou, Jiangsu Province, China.

出版信息

Diabetes. 2016 Jan;65(1):255-68. doi: 10.2337/db15-0963. Epub 2015 Oct 15.

Abstract

Calpain plays a critical role in cardiomyopathic changes in type 1 diabetes (T1D). This study investigated how calpain regulates mitochondrial reactive oxygen species (ROS) generation in the development of diabetic cardiomyopathy. T1D was induced in transgenic mice overexpressing calpastatin, in mice with cardiomyocyte-specific capn4 deletion, or in their wild-type littermates by injection of streptozotocin. Calpain-1 protein and activity in mitochondria were elevated in diabetic mouse hearts. The increased mitochondrial calpain-1 was associated with an increase in mitochondrial ROS generation and oxidative damage and a reduction in ATP synthase-α (ATP5A1) protein and ATP synthase activity. Genetic inhibition of calpain or upregulation of ATP5A1 increased ATP5A1 and ATP synthase activity, prevented mitochondrial ROS generation and oxidative damage, and reduced cardiomyopathic changes in diabetic mice. High glucose concentration induced ATP synthase disruption, mitochondrial superoxide generation, and cell death in cardiomyocytes, all of which were prevented by overexpression of mitochondria-targeted calpastatin or ATP5A1. Moreover, upregulation of calpain-1 specifically in mitochondria induced the cleavage of ATP5A1, superoxide generation, and apoptosis in cardiomyocytes. In summary, calpain-1 accumulation in mitochondria disrupts ATP synthase and induces ROS generation, which promotes diabetic cardiomyopathy. These findings suggest a novel mechanism for and may have significant implications in diabetic cardiac complications.

摘要

钙蛋白酶在1型糖尿病(T1D)的心肌病变化中起关键作用。本研究调查了钙蛋白酶在糖尿病性心肌病发展过程中如何调节线粒体活性氧(ROS)的生成。通过注射链脲佐菌素,在过表达钙蛋白酶抑制蛋白的转基因小鼠、心肌细胞特异性钙蛋白酶4缺失的小鼠或它们的野生型同窝小鼠中诱导产生T1D。糖尿病小鼠心脏中线粒体中的钙蛋白酶-1蛋白和活性升高。线粒体钙蛋白酶-1的增加与线粒体ROS生成增加、氧化损伤以及ATP合酶-α(ATP5A1)蛋白和ATP合酶活性降低有关。对钙蛋白酶的基因抑制或ATP5A1的上调增加了ATP5A1和ATP合酶活性,防止了线粒体ROS生成和氧化损伤,并减少了糖尿病小鼠的心肌病变化。高葡萄糖浓度诱导心肌细胞中ATP合酶破坏、线粒体超氧化物生成和细胞死亡,而线粒体靶向的钙蛋白酶抑制蛋白或ATP5A1的过表达均可防止这些情况。此外,线粒体中钙蛋白酶-1的特异性上调诱导了ATP5A1的裂解、超氧化物生成和心肌细胞凋亡。总之,线粒体中钙蛋白酶-1的积累破坏了ATP合酶并诱导ROS生成,从而促进糖尿病性心肌病。这些发现提示了一种新机制,可能对糖尿病心脏并发症具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1209/4686953/5bbc21b9a116/db150963f1.jpg

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