Department of Biology, Institute of Molecular Systems Biology, ETH Zurich, Zurich, Switzerland.
PhD Program in Molecular and Translational Biomedicine of the Competence Center Personalized Medicine UZH/ETH, Zurich, Switzerland.
Mol Syst Biol. 2019 Jan 14;15(1):e8438. doi: 10.15252/msb.20188438.
Proteins are major effectors and regulators of biological processes that can elicit multiple functions depending on their interaction with other proteins. The organization of proteins into macromolecular complexes and their quantitative distribution across these complexes is, therefore, of great biological and clinical significance. In this paper, we describe an integrated experimental and computational technique to quantify hundreds of protein complexes in a single operation. The method consists of size exclusion chromatography (SEC) to fractionate native protein complexes, SWATH/DIA mass spectrometry to precisely quantify the proteins in each SEC fraction, and the computational framework to detect and quantify protein complexes by error-controlled, complex-centric analysis using prior information from generic protein interaction maps. Our analysis of the HEK293 cell line proteome delineates 462 complexes composed of 2,127 protein subunits. The technique identifies novel sub-complexes and assembly intermediates of central regulatory complexes while assessing the quantitative subunit distribution across them. We make the toolset freely accessible and provide a web platform, , for custom exploration of the HEK293 proteome modularity.
蛋白质是生物过程的主要效应物和调节剂,它们可以通过与其他蛋白质的相互作用产生多种功能。因此,蛋白质在大分子复合物中的组织及其在这些复合物中的定量分布具有重要的生物学和临床意义。在本文中,我们描述了一种集成的实验和计算技术,可在单次操作中定量数百种蛋白质复合物。该方法包括大小排阻色谱(SEC)来分离天然蛋白质复合物,SWATH/DIA 质谱法来精确定量每个 SEC 级分中的蛋白质,以及计算框架 ,通过使用通用蛋白质相互作用图谱的先验信息,通过误差控制、以复合物为中心的分析来检测和定量蛋白质复合物。我们对 HEK293 细胞系蛋白质组的分析描绘了由 2127 个蛋白质亚基组成的 462 个复合物。该技术可识别中央调控复合物的新亚复合物和组装中间体,同时评估它们之间的定量亚基分布。我们免费提供工具集 ,并提供一个网络平台 ,用于定制探索 HEK293 蛋白质组的模块性。