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Redox proteomic analysis of the gastrocnemius muscle from adult and old mice

机译:成年和成年小鼠腓肠肌的氧化还原蛋白质组学分析

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The data provides information in support of the research article, “Differential Cysteine Labeling and Global Label-Free Proteomics Reveals an Altered Metabolic State in Skeletal Muscle Aging”, Journal of Proteome Research, 2014, 13 (11), 2008–21 [1]. Raw data is available from ProteomeXchange [2] with identifier PDX001054. The proteome of gastrocnemius muscle from adult and old mice was analyzed by global label-free proteomics and the relative quantification of specific reduced and reversibly oxidized Cysteine (Cys) residues was performed using Skyline [3]. Briefly, reduced Cysteine (Cys) containing peptides was alkylated using N-ethylmalemide (d0-NEM). Samples were desalted and reversibly oxidized Cys residues were reduced using tris(2-carboxyethyl)phosphine (TCEP) and the newly formed reduced Cys residues were labeled with heavy NEM( d5-NEM). Label-free analysis of the global proteome of adult ( n =5) and old ( n =4) gastrocnemius muscles was performed using Peaks7? mass spectrometry data analysis software [4]. Relative quantification of Cys containing peptides that were identified as reduced (d(0) NEM labeled) and reversibly oxidized d(5)–NEM labeled was performed using the intensity of their precursor ions in Skyline. Results indicate that muscles from old mice show reduced redox flexibility particularly in proteins involved in the generation of precursor metabolites and energy metabolism, indicating a loss in the flexibility of the redox energy response.
机译:数据为研究文章“差异半胱氨酸标记和无标签的蛋白质组学揭示了骨骼肌衰老中代谢状态的改变”提供了信息,蛋白质组研究杂志,2014,13(11),2008–21 [1] 。原始数据可从ProteomeXchange [2]获得,其标识符为PDX001054。用全球无标签蛋白质组学分析成年和老年小鼠腓肠肌的蛋白质组,并使用天际线[3]对特定还原和可逆氧化的半胱氨酸(Cys)残基进行相对定量[3]。简而言之,使用N-乙基马来酰亚胺(d0-NEM)将含有还原半胱氨酸(Cys)的肽烷基化。使样品脱盐,并使用三(2-羧乙基)膦(TCEP)还原可逆氧化的Cys残基,并用重NEM(d5-NEM)标记新形成的还原Cys残基。使用Peaks7对成年腓肠肌(n = 5)和老年腓肠肌(n = 4)的整体蛋白质组进行无标记分析。质谱数据分析软件[4]。使用Skyline中其前体离子的强度,对被鉴定为还原(d(0)NEM标记)和可逆氧化d(5)-NEM标记的含半胱氨酸肽的相对定量进行了定量。结果表明,老年小鼠的肌肉显示出降低的氧化还原弹性,特别是参与前体代谢物生成和能量代谢的蛋白质中的氧化还原弹性降低,这表明氧化还原能量反应的弹性降低。

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