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Top-down characterization of endogenous protein complexes with native proteomics

机译:用天然蛋白质组学的内源蛋白复合物的自上而下表征

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摘要

Protein complexes exhibit great diversity in protein membership, post-translational modifications and noncovalent cofactors, enabling them to function as the actuators of many important biological processes. The exposition of these molecular features using current methods lacks either throughput or molecular specificity, ultimately limiting the use of protein complexes as direct analytical targets in a wide range of applications. Here, we apply native proteomics, enabled by a multistage tandem MS approach, to characterize 125 intact endogenous complexes and 217 distinct proteoforms derived from mouse heart and human cancer cell lines in discovery mode. The native conditions preserved soluble protein-protein interactions, high-stoichiometry noncovalent cofactors, covalent modifications to cysteines, and, remarkably, superoxide ligands bound to the metal cofactor of superoxide dismutase 2. These data enable precise compositional analysis of protein complexes as they exist in the cell and demonstrate a new approach that uses MS as a bridge to structural biology.
机译:蛋白质复合物在蛋白质成员,翻译后修改和非共价辅助因子中表现出大量多样性,使它们能够用作许多重要生物过程的执行器。使用电流方法的这些分子特征的阐述缺乏产量或分子特异性,最终限制蛋白质复合物在各种应用中的直接分析靶标。在这里,我们应用由多级串联MS方法使能的本地蛋白质组学,以表征125个完整的内源复合物和217个不同的小鼠心脏和人类癌细胞系中的不同蛋白质常规在发现模式中。本地条件保留了可溶性蛋白质 - 蛋白质相互作用,高化学计量非共价辅助型胶囊,对半胱氨酸的共价修饰,并且显着地,与超氧化物歧化酶的金属辅因子结合的超氧化物配体。这些数据使得它们存在精确的蛋白质复合物的组成分析该细胞并展示一种新方法,该方法使用MS作为结构生物学的桥梁。

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