系统蛋白质组探索的方法

Ronny Falk, Margareta Ramström, Stefan Ståhl, Sophia Hober
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引用次数: 27

摘要

近年来,随着人类基因组计划(HUGO)的完成,组织和细胞类型中的基因功能、蛋白质丰度和表达模式已成为科学界关注的中心领域。绘制人类蛋白质组将扩展基因组序列的价值,旨在阐明蛋白质定位、丰度和功能的大规模努力对生物标志物和药物发现是无价的。这个研究领域被称为蛋白质组学,比任何基因组测序工作都要求更高,而且要在大范围内进行这项工作是一项高度多样化的任务。因此,蛋白质组学领域采用一系列方法来研究蛋白质组学的不同方面,包括蛋白质定位、蛋白质-蛋白质相互作用、翻译后修饰和组织和体液中蛋白质组成的改变(如差异表达)。在这里,一些最常用的方法,包括色谱分离连同质谱和一些亲和蛋白质组学的概念进行了讨论和举例说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Approaches for systematic proteome exploration

With the completion of the human genome project (HUGO) during recent years, gene function, protein abundance and expression patterns in tissues and cell types have emerged as central areas for the scientific community. A mapped human proteome will extend the value of the genome sequence and large-scale efforts aiming at elucidating protein localization, abundance and function are invaluable for biomarker and drug discovery. This research area, termed proteomics, is more demanding than any genome sequencing effort and to perform this on a wide scale is a highly diverse task. Therefore, the proteomics field employs a range of methods to examine different aspects of proteomics including protein localization, protein–protein interactions, posttranslational modifications and alteration of protein composition (e.g. differential expression) in tissues and body fluids. Here, some of the most commonly used methods, including chromatographic separations together with mass spectrometry and a number of affinity proteomics concepts are discussed and exemplified.

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