线粒体的蛋白质组学分析揭示了衰竭心脏从脂肪酸氧化到糖酵解的代谢转换。

Jun Wang, Ling Bai, Jing Li, ChaoFeng Sun, Jin Zhao, ChangCong Cui, Ke Han, Yu Liu, XiaoZhen Zhuo, TingZhong Wang, Ping Liu, FenLing Fan, YouFei Guan, AiQun Ma
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引用次数: 21

摘要

这项工作表征了衰竭心脏的线粒体蛋白质组学特征,并阐明了心力衰竭线粒体的分子基础。用心肌梗死诱导大鼠心力衰竭,用差速离心法从心脏中分离线粒体。利用二维凝胶电泳和基质辅助激光解吸/电离飞行时间质谱,采用系统生物学方法研究了正常和衰竭心脏之间线粒体蛋白的差异。质谱分析鉴定出27个与能量代谢有关的蛋白表达差异。其中,上调蛋白包括三羧酸循环酶和丙酮酸脱氢酶复合物亚基,下调蛋白涉及脂肪酸氧化和OXPHOS复合物。这些结果表明心力衰竭中存在从游离脂肪酸氧化到糖酵解的实质性代谢转换,并为线粒体结构和功能参数的改变提供了分子证据,这些改变可能有助于缺血性损伤期间心功能障碍。
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Proteomic analysis of mitochondria reveals a metabolic switch from fatty acid oxidation to glycolysis in the failing heart.

This work characterizes the mitochondrial proteomic profile in the failing heart and elucidates the molecular basis of mitochondria in heart failure. Heart failure was induced in rats by myocardial infarction, and mitochondria were isolated from hearts by differential centrifugation. Using two-dimensional gel electrophoresis and matrix-assisted laser desorption/ionization-time of flight mass spectrometry, a system biology approach was employed to investigate differences in mitochondrial proteins between normal and failing hearts. Mass spectrometry identified 27 proteins differentially expressed that involved in energy metabolism. Among those, the up-regulated proteins included tricarboxylic acid cycle enzymes and pyruvate dehydrogenase complex subunits while the down-regulated proteins were involved in fatty acid oxidation and the OXPHOS complex. These results suggest a substantial metabolic switch from free fatty acid oxidation to glycolysis in heart failure and provide molecular evidence for alterations in the structural and functional parameters of mitochondria that may contribute to cardiac dysfunction during ischemic injury.

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