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Phosphoproteome analysis of functional mitochondria isolated from resting human muscle reveals extensive phosphorylation of inner membrane protein complexes and enzymes

机译:从人体静息肌分离的功能性线粒体的磷酸化蛋白质组学分析揭示了内膜蛋白复合物和酶的广泛磷酸化

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摘要

Mitochondria play a central role in energy metabolism and cellular survival, and consequently mitochondrial dysfunction is associated with a number of human pathologies. Reversible protein phosphorylation emerges as a central mechanism in the regulation of several mitochondrial processes. In skeletal muscle, mitochondrial dysfunction is linked to insulin resistance in humans with obesity and type 2 diabetes. We performed a phosphoproteomic study of functional mitochondria isolated from human muscle biopsies with the aim to obtain a comprehensive overview of mitochondrial phosphoproteins. Combining an efficient mitochondrial isolation protocol with several different phosphopeptide enrichment techniques and LC-MS/MS we identified 155 distinct phosphorylation sites in 77 mitochondrial phosphoproteins, including 116 phosphoserine, 23 phosphothreonine, and 16 phosphotyrosine residues. The relatively high number of phosphotyrosine residues suggests an important role for tyrosine phosphorylation in mitochondrial signaling. Many of the mitochondrial phosphoproteins are involved oxidative phosphorylation, tricarboxylic acid cycle, and lipid metabolism, i.e. processes proposed to be involved in insulin resistance. We also assigned phosphorylation sites in mitochondrial proteins involved in amino acid degradation, importers and transporters, calcium homeostasis, and apoptosis. Bioinformatics analysis of kinase motifs revealed that many of these mitochondrial phosphoproteins are substrates for protein kinase A, protein kinase C, casein kinase II and DNA-dependent protein kinase. Our results demonstrate the feasibility of performing phosphoproteome analysis of organelles isolated from human tissue and provide novel targets for functional studies of reversible phosphorylation in mitochondria. Future comparative phosphoproteome analysis of mitochondria from healthy and diseased individuals will provide insights into the role of abnormal phosphorylation in pathologies, such as type 2 diabetes.
机译:线粒体在能量代谢和细胞存活中起着核心作用,因此线粒体功能障碍与许多人类疾病有关。可逆的蛋白质磷酸化作为调节几个线粒体过程的核心机制出现。在骨骼肌中,线粒体功能障碍与肥胖和2型糖尿病患者的胰岛素抵抗有关。我们进行了从人类肌肉活检组织中分离的功能性线粒体的磷酸化蛋白质组学研究,目的是全面了解线粒体磷蛋白。将有效的线粒体分离方案与几种不同的磷酸肽富集技术和LC-MS / MS相结合,我们在77个线粒体磷蛋白中鉴定了155个不同的磷酸化位点,包括116个磷酸丝氨酸,23个磷酸苏氨酸和16个磷酸酪氨酸残基。磷酸酪氨酸残基的相对较高表明酪氨酸磷酸化在线粒体信号传导中的重要作用。许多线粒体磷蛋白都涉及氧化磷酸化,三羧酸循环和脂质代谢,即被认为与胰岛素抵抗有关的过程。我们还为线粒体蛋白的磷酸化位点分配了氨基酸降解,输入和转运,钙稳态和凋亡的参与。激酶基序的生物信息学分析表明,许多这些线粒体磷蛋白是蛋白激酶A,蛋白激酶C,酪蛋白激酶II和DNA依赖性蛋白激酶的底物。我们的结果证明了对从人体组织中分离的细胞器进行磷酸化蛋白质组学分析的可行性,并为线粒体中可逆磷酸化的功能研究提供了新的靶点。未来来自健康个体和患病个体的线粒体的磷酸化蛋白质组学比较分析将提供洞察异常磷酸化在诸如2型糖尿病等病理中的作用的见解。

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