دورية أكاديمية

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

التفاصيل البيبلوغرافية
العنوان: Mitochondrial Calpain-1 Disrupts ATP Synthase and Induces Superoxide Generation in Type 1 Diabetic Hearts: A Novel Mechanism Contributing to Diabetic Cardiomyopathy.
المؤلفون: Rui Ni, Dong Zheng, Sidong Xiong, Hill, David J., Tao Sun, Gardiner, Richard B., Fan, Guo-Chang, Yanrong Lu, Abel, E. Dale, Greer, Peter A., Tianqing Peng, Ni, Rui, Zheng, Dong, Xiong, Sidong, Sun, Tao, Lu, Yanrong, Peng, Tianqing
المصدر: Diabetes; Jan2016, Vol. 65 Issue 1, p255-268, 14p, 8 Graphs
مصطلحات موضوعية: CALPAIN, MITOCHONDRIA, ADENOSINE triphosphatase, SUPEROXIDES, TYPE 1 diabetes, DIABETIC cardiomyopathy, GENETIC overexpression, OXIDATIVE stress, CELL metabolism, DIABETES complications, HEART metabolism, REACTIVE oxygen species, ANIMAL experimentation, APOPTOSIS, BIOLOGICAL models, CALCIUM-binding proteins, DIABETES, MICE, PEROXIDES, PROTEOLYTIC enzymes, RESEARCH funding, DISEASE complications
مستخلص: 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. [ABSTRACT FROM AUTHOR]
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قاعدة البيانات: Complementary Index
الوصف
تدمد:00121797
DOI:10.2337/db15-0963