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Current chemical tagging strategies for proteome analysis by mass spectrometry

机译:通过质谱分析蛋白质组的当前化学标记策略

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Proteomics, the analysis of the protein complement of a cell or an organism, has grown rapidly as a subdiscipline of the life sciences. Mass spectrometry (MS) is one of the central detection techniques in proteome analysis, yet it has to rely on prior sample preparation steps that reduce the enormous complexity of the protein mixtures obtained from biological systems. For that reason, a number of so-called tagging (or labeling) strategies have been developed that target specific amino acid residues or post-translational modifications, enabling the enrichment of subtractions via affinity clean-up, resulting in the identification of an ever increasing number of proteins. In addition, the attachment of stable-isotope-labeled tags now allows the relative quantitation of protein levels of two samples, e.g. those representing different cell states, which is of great significance for drug discovery and molecular biology. Finally, tagging schemes also serve to facilitate interpretation of MS/MS spectra, therefore assisting in de novo elucidation of protein sequences and automated database searching. This review summarizes the different application fields for tagging strategies for today's MS-based proteome analysis. Advantages and drawbacks of the numerous strategies that have appeared in the literature in the last years are highlighted, and an outlook on emerging tagging techniques is given. (C) 2004 Elsevier B.V. All rights reserved.
机译:蛋白质组学是对细胞或生物体蛋白质补充的分析,作为生命科学的一个子学科,其发展迅速。质谱(MS)是蛋白质组学分析中的核心检测技术之一,但它必须依靠先前的样品制备步骤来降低从生物系统获得的蛋白质混合物的巨大复杂性。由于这个原因,已经开发了许多针对特定氨基酸残基或翻译后修饰的所谓标记(或标记)策略,从而可以通过亲和力纯化富集减去,从而鉴定出不断增加的蛋白质数量。另外,稳定同位素标记的标签的附着现在允许相对定量两个样品的蛋白质水平,例如代表不同细胞状态的那些,对于药物发现和分子生物学具有重要意义。最后,标记方案还有助于促进MS / MS谱图的解释,因此有助于从头阐明蛋白质序列和自动数据库搜索。这篇综述总结了当今基于MS的蛋白质组分析中标记策略的不同应用领域。强调了近年来文献中出现的众多策略的优缺点,并对新兴的标记技术进行了展望。 (C)2004 Elsevier B.V.保留所有权利。

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