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马拉松和短跑:慢肌纤维和快肌纤维差异的综合定量蛋白质组学和转录组学分析。

On marathons and Sprints: an integrated quantitative proteomics and transcriptomics analysis of differences between slow and fast muscle fibers.

机构信息

Max Planck Institute for Molecular Biomedicine, Röntgenstr 20, D-48149 Münster, Germany.

出版信息

Mol Cell Proteomics. 2012 Jun;11(6):M111.010801. doi: 10.1074/mcp.M111.010801. Epub 2011 Dec 30.

Abstract

Skeletal muscle tissue contains slow as well as fast twitch muscle fibers that possess different metabolic and contractile properties. Although the distribution of individual proteins in fast and slow fibers has been investigated extensively, a comprehensive proteomic analysis, which is key for any systems biology approach to muscle tissues, is missing. Here, we compared the global protein levels and gene expression profiles of the predominantly slow soleus and fast extensor digitorum longus muscles using the principle of in vivo stable isotope labeling with amino acids based on a fully lysine-6 labeled SILAC-mouse. We identified 551 proteins with significant quantitative differences between slow soleus and fast extensor digitorum longus fibers out of >2000 quantified proteins, which greatly extends the repertoire of proteins differentially regulated between both muscle types. Most of the differentially regulated proteins mediate cellular contraction, ion homeostasis, glycolysis, and oxidation, which reflect the major functional differences between both muscle types. Comparison of proteomics and transcriptomics data uncovered the existence of fiber-type specific posttranscriptional regulatory mechanisms resulting in differential accumulation of Myosin-8 and α-protein kinase 3 proteins and mRNAs among others. Phosphoproteome analysis of soleus and extensor digitorum longus muscles identified 2573 phosphosites on 973 proteins including 1040 novel phosphosites. The in vivo stable isotope labeling with amino acids-mouse approach used in our study provides a comprehensive view into the protein networks that direct fiber-type specific functions and allows a detailed dissection of the molecular composition of slow and fast muscle tissues with unprecedented resolution.

摘要

骨骼肌组织包含慢肌和快肌纤维,它们具有不同的代谢和收缩特性。虽然已经广泛研究了快肌和慢肌纤维中个别蛋白质的分布,但缺乏全面的蛋白质组学分析,而这是任何肌肉组织系统生物学方法的关键。在这里,我们使用基于完全赖氨酸 6 标记 SILAC-小鼠的体内稳定同位素标记与氨基酸的原理,比较了主要为慢肌比目鱼肌和快肌趾长伸肌的整体蛋白质水平和基因表达谱。我们从>2000 种定量蛋白质中鉴定出 551 种在慢肌比目鱼肌和快肌趾长伸肌纤维之间具有显著定量差异的蛋白质,这大大扩展了两种肌肉类型之间差异调节的蛋白质 repertoire。大多数差异调节的蛋白质介导细胞收缩、离子稳态、糖酵解和氧化,这反映了两种肌肉类型之间的主要功能差异。蛋白质组学和转录组学数据的比较揭示了存在纤维类型特异性的转录后调节机制,导致肌球蛋白-8 和α-蛋白激酶 3 蛋白和 mRNAs 等的差异积累。比目鱼肌和趾长伸肌的磷酸蛋白质组学分析鉴定了 973 种蛋白质上的 2573 个磷酸化位点,包括 1040 个新磷酸化位点。我们研究中使用的体内稳定同位素标记与氨基酸-小鼠方法提供了一个全面的视角,了解指导纤维类型特异性功能的蛋白质网络,并允许以前所未有的分辨率详细剖析慢肌和快肌组织的分子组成。

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