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通过尺寸排阻色谱-质谱联用技术(SEC-MS)进行蛋白质复合物的全系统分析。

System-Wide Profiling of Protein Complexes Via Size Exclusion Chromatography-Mass Spectrometry (SEC-MS).

机构信息

Department of Biology, Institute of Molecular Systems Biology, ETH Zurich, Zürich, Switzerland.

School of Biological Sciences, Queen's University of Belfast, Belfast, UK.

出版信息

Methods Mol Biol. 2021;2259:269-294. doi: 10.1007/978-1-0716-1178-4_18.

Abstract

In living cells, most proteins are organized in stable or transient functional assemblies, protein complexes, which control a multitude of vital cellular processes such as cell cycle progression, metabolism, and signal transduction. Over several decades, specific protein complexes have been analyzed by structural biology methods, initially X-ray crystallography and more recently single particle cryoEM. In parallel, mass spectrometry (MS)-based methods including in vitro affinity-purification coupled to MS or in vivo protein proximity-dependent labeling methods have proven particularly effective to detect complexes, thus nominating new assemblies for structural analysis. Those approaches, however, are either of limited in throughput or require specifically engineered protein systems.In this chapter, we present protocols for a workflow that supports the parallel analysis of multiple complexes from the same biological sample with respect to abundance, subunit composition, and stoichiometry. It consists of the separation of native complexes by size-exclusion chromatography (SEC) and the subsequent mass spectrometric analysis of the proteins in consecutive SEC fractions. In particular, we describe (1) optimized conditions to achieve native protein complex separation by SEC, (2) the preparation of the SEC fractions for MS analysis, (3) the acquisition of the MS data at high throughput via SWATH/DIA (data-independent analysis) mass spectrometry and short chromatographic gradients, and (4) a set of bioinformatic tools for the targeted analysis of protein complexes. Altogether, the parallel measurement of a high number of complexes from a single biological sample results in unprecedented system-level insights into the remodeling of cellular protein complexes in response to perturbations of a broad range of cellular systems.

摘要

在活细胞中,大多数蛋白质组织成稳定或瞬态的功能组装体,即蛋白质复合物,这些复合物控制着许多重要的细胞过程,如细胞周期进程、代谢和信号转导。几十年来,结构生物学方法已经分析了特定的蛋白质复合物,最初是 X 射线晶体学,最近是单颗粒 cryoEM。与此同时,基于质谱(MS)的方法,包括体外亲和纯化与 MS 结合或体内蛋白质邻近依赖性标记方法,已被证明特别有效地检测复合物,从而为结构分析提名新的组装体。然而,这些方法要么通量有限,要么需要专门设计的蛋白质系统。在本章中,我们提出了一个工作流程的协议,该协议支持从相同的生物样本中平行分析多个复合物的丰度、亚基组成和化学计量。它包括通过大小排阻色谱(SEC)分离天然复合物,以及随后对连续 SEC 馏分中的蛋白质进行质谱分析。特别是,我们描述了(1)通过 SEC 实现天然蛋白质复合物分离的优化条件,(2)SEC 馏分的 MS 分析准备,(3)通过 SWATH/DIA(数据非依赖性分析)质谱和短色谱梯度实现高通量的 MS 数据采集,以及(4)一组用于蛋白质复合物靶向分析的生物信息学工具。总之,从单个生物样本中平行测量大量复合物,为研究广泛的细胞系统扰动下细胞蛋白质复合物的重塑提供了前所未有的系统水平的见解。

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