Changes in muscle proteomics in the course of the Caudwell Research Expedition to Mt. Everest

生物 柠檬酸循环 糖酵解 生物化学 热休克蛋白 肌酸激酶 丙酮酸激酶 氧化磷酸化 蛋白质组学 肌球蛋白 细胞生物学 基因
作者
Denny Levett,Agnese Viganò,Daniele Capitanio,Michele Vasso,Sara De Palma,Manuela Moriggi,Daniel Martín,Andrew J. Murray,P. Cerretelli,Michael P. W. Grocott,Cecilia Gelfi
出处
期刊:Proteomics [Wiley]
卷期号:15 (1): 160-171 被引量:39
标识
DOI:10.1002/pmic.201400306
摘要

This study employed differential proteomic and immunoassay techniques to elucidate the biochemical mechanisms utilized by human muscle (vastus lateralis) in response to high altitude hypoxia exposure. Two groups of subjects, participating in a medical research expedition (A, n = 5, 19 d at 5300 m altitude; B, n = 6, 66 d up to 8848 m) underwent a ≈ 30% drop of muscular creatine kinase and of glycolytic enzymes abundance. Protein abundance of most enzymes of the tricarboxylic acid cycle and oxidative phosphorylation was reduced both in A and, particularly, in B. Restriction of α-ketoglutarate toward succinyl-CoA resulted in increased prolyl hydroxylase 2 and glutamine synthetase. Both A and B were characterized by a reduction of elongation factor 2 alpha, controlling protein translation, and by an increase of heat shock cognate 71 kDa protein involved in chaperone-mediated autophagy. Increased protein levels of catalase and biliverdin reductase occurred in A alongside a decrement of voltage-dependent anion channels 1 and 2 and of myosin-binding protein C, suggesting damage to the sarcomeric structures. This study suggests that during acclimatization to hypobaric hypoxia the muscle behaves as a producer of substrates activating a metabolic reprogramming able to support anaplerotically the tricarboxylic acid cycle, to control protein translation, to prevent energy expenditure and to activate chaperone-mediated autophagy.
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