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蛋白质组学:理解蛋白质复杂性的基础。

Proteomics: bases for protein complexity understanding.

机构信息

Laboratory of Proteomics and Analytical Techniques, Research Laboratories, Fondazione di Ricerca e Cura Giovanni Paolo II, Catholic University, Campobasso, Italy.

出版信息

Thromb Res. 2012 Mar;129(3):257-62. doi: 10.1016/j.thromres.2011.12.035. Epub 2012 Jan 26.

Abstract

In the post genomic era we became aware that the genomic sequence and protein functions cannot be correlated. One gene can encode multiple protein functions mainly because of mRNA splice variants, post translational modifications (PTM) and moonlighting functions. To study the whole population of proteins present in a cell to a specific time point and under defined conditions it is necessary to investigate the proteome. Comprehensive analysis of the proteome requires the use of emerging high technologies because of the complexity and wide dynamic range of protein concentrations. Proteomics provides the tools to study protein identification and quantitation, protein-protein interactions, protein modifications and localization. The most widespread strategy for studying global protein expression employs two-dimensional polyacrylamide gel electrophoresis (2D-PAGE) allowing thousands of proteins to be resolved and their expression quantified. Liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS) has emerged as a high throughput technique for protein identification and characterization because of its high sensitivity, precision and accuracy. LC-MS/MS is well suited for accurate quantitation of protein expression levels, post-translational modifications and comparative and absolute quantitative analysis of peptides. Bioinformatic tools are required to elaborate the growing number of proteomic data. Here, we give an overview of the current status of the wide range of technologies that define and characterize the modern proteomics.

摘要

在后基因组时代,我们意识到基因组序列和蛋白质功能不能相互关联。一个基因可以编码多种蛋白质功能,主要是因为 mRNA 剪接变体、翻译后修饰 (PTM) 和兼职功能。为了研究特定时间点和特定条件下细胞中存在的全部蛋白质群体,有必要研究蛋白质组。由于蛋白质浓度的复杂性和广泛的动态范围,综合分析蛋白质组需要使用新兴的高科技。蛋白质组学提供了研究蛋白质鉴定和定量、蛋白质-蛋白质相互作用、蛋白质修饰和定位的工具。研究全局蛋白质表达最广泛的策略是使用二维聚丙烯酰胺凝胶电泳 (2D-PAGE),可以解析数千种蛋白质并对其表达进行定量。由于其高灵敏度、精度和准确性,液相色谱-串联质谱 (LC-MS/MS) 已成为一种高通量的蛋白质鉴定和表征技术。LC-MS/MS 非常适合准确定量蛋白质表达水平、翻译后修饰以及肽的比较和绝对定量分析。需要生物信息学工具来精心处理日益增长的蛋白质组学数据。在这里,我们概述了定义和描述现代蛋白质组学的广泛技术的现状。

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