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基于无凝胶质谱的高通量蛋白质组学:研究蛋白质和蛋白质组生物学反应的工具。

Gel-free mass spectrometry-based high throughput proteomics: tools for studying biological response of proteins and proteomes.

作者信息

Roe Mikel R, Griffin Timothy J

机构信息

Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Proteomics. 2006 Sep;6(17):4678-87. doi: 10.1002/pmic.200500876.

Abstract

Revolutionary advances in biological mass spectrometry (MS) have provided a basic tool to make possible comprehensive proteomic analysis. Traditionally, two-dimensional gel electrophoresis has been used as a separation method coupled with MS to facilitate analysis of complex protein mixtures. Despite the utility of this method, the many challenges of comprehensive proteomic analysis has motivated the development of gel-free MS-based strategies to obtain information not accessible using two-dimensional gel separations. These advanced strategies have enabled researchers to dig deeper into complex proteomes, gaining insights into the composition, quantitative response, covalent modifications and macromolecular interactions of proteins that collectively drive cellular function. This review describes the current state of gel-free, high throughput proteomic strategies using MS, including (i) the separation approaches commonly used for complex mixture analysis; (ii) strategies for large-scale quantitative analysis; (iii) analysis of post-translational modifications; and (iv) recent advances and future directions. The use of these strategies to make new discoveries at the proteome level into the effects of disease or other cellular perturbations is discussed in a variety of contexts, providing information on the potential of these tools in electromagnetic field research.

摘要

生物质谱(MS)的革命性进展提供了一种基础工具,使全面的蛋白质组分析成为可能。传统上,二维凝胶电泳一直被用作与质谱联用的分离方法,以促进对复杂蛋白质混合物的分析。尽管该方法具有实用性,但全面蛋白质组分析面临的诸多挑战促使了基于无凝胶质谱策略的发展,以获取使用二维凝胶分离无法获得的信息。这些先进策略使研究人员能够更深入地研究复杂蛋白质组,深入了解共同驱动细胞功能的蛋白质的组成、定量反应、共价修饰和大分子相互作用。本综述描述了使用质谱的无凝胶、高通量蛋白质组策略的现状,包括:(i)常用于复杂混合物分析的分离方法;(ii)大规模定量分析策略;(iii)翻译后修饰分析;以及(iv)最新进展和未来方向。在各种背景下讨论了使用这些策略在蛋白质组水平上对疾病或其他细胞扰动的影响做出新发现,提供了这些工具在电磁场研究中的潜力信息。

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