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蛋白质组学:务实的视角。

Proteomics: a pragmatic perspective.

机构信息

University of Southern California Center for Applied Molecular Medicine, Departments of Medicine and Biomedical Engineering, Los Angeles, California, USA.

出版信息

Nat Biotechnol. 2010 Jul;28(7):695-709. doi: 10.1038/nbt.1658. Epub 2010 Jul 9.

Abstract

The evolution of mass spectrometry-based proteomic technologies has advanced our understanding of the complex and dynamic nature of proteomes while concurrently revealing that no 'one-size-fits-all' proteomic strategy can be used to address all biological questions. Whereas some techniques, such as those for analyzing protein complexes, have matured and are broadly applied with great success, others, such as global quantitative protein expression profiling for biomarker discovery, are still confined to a few expert laboratories. In this Perspective, we attempt to distill the wide array of conceivable proteomic approaches into a compact canon of techniques suited to asking and answering specific types of biological questions. By discussing the relationship between the complexity of a biological sample and the difficulty of implementing the appropriate analysis approach, we contrast areas of proteomics broadly usable today with those that require significant technical and conceptual development. We hope to provide nonexperts with a guide for calibrating expectations of what can realistically be learned from a proteomics experiment and for gauging the planning and execution effort. We further provide a detailed supplement explaining the most common techniques in proteomics.

摘要

基于质谱的蛋白质组学技术的发展,增进了我们对蛋白质组复杂和动态性质的理解,同时也表明,没有一种“一刀切”的蛋白质组学策略可以用来解决所有的生物学问题。虽然一些技术,如分析蛋白质复合物的技术已经成熟并广泛应用,取得了巨大的成功,但其他技术,如用于发现生物标志物的全局定量蛋白质表达谱分析,仍然局限于少数专家实验室。在本观点中,我们试图将各种可能的蛋白质组学方法浓缩为一个适合于提出和回答特定类型生物学问题的技术简编。通过讨论生物样本的复杂性与实施适当分析方法的难度之间的关系,我们对比了今天广泛可用的蛋白质组学领域与那些需要重大技术和概念发展的领域。我们希望为非专业人士提供一个指南,帮助他们调整对蛋白质组学实验能够实际获得的结果的期望,并评估规划和执行的难度。我们还提供了一个详细的补充说明,解释了蛋白质组学中最常见的技术。

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