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A robust workflow for native mass spectrometric analysis of affinity-isolated endogenous protein assemblies

机译:亲和分离的内源蛋白质组装的天然质谱分析的强大工作流程

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摘要

The central players in most cellular events are assemblies of macromolecules. Structural and functional characterization of these assemblies requires knowledge of their subunit stoichiometry and intersubunit connectivity. One of the most direct means for acquiring such information is so-called native mass spectrometry (MS), wherein the masses of the intact assemblies and parts thereof are accurately determined. It is of particular interest to apply native MS to the study of endogenous protein assemblies—i.e., those wherein the component proteins are expressed at endogenous levels in their natural functional states rather than the overexpressed (sometimes partial) constructs commonly employed in classical structural studies, whose assembly can introduce stoichiometry artifacts and other unwanted effects. To date, the application of native MS to the elucidation of endogenous protein complexes has been limited by the difficulty in obtaining pristine cell-derived assemblies at sufficiently high concentrations for effective analysis. To address this challenge, we present here a robust workflow that couples rapid and efficient affinity isolation of endogenous protein complexes with a sensitive native MS readout. The resulting workflow has the potential to provide a wealth of data on the stoichiometry and intersubunit connectivity of endogenous protein assemblies—information that is key to successful integrative structural elucidation of biological systems.
机译:在大多数细胞事件中,主要的参与者是大分子的组装。这些组件的结构和功能表征需要了解其亚单位化学计量和亚单位间的连通性。获取此类信息的最直接手段之一就是所谓的自然质谱(MS),其中完整组件及其零件的质量可以准确确定。将天然MS应用于内源蛋白质组装的研究尤其有意义,即其中成分蛋白质以其天然功能状态以内源水平表达的蛋白质,而不是经典结构研究中通常使用的过表达(有时是部分)的构建物,其装配会引入化学计量伪影和其他不良影响。迄今为止,由于难以获得足够高浓度的原始细胞来源的组装物以进行有效分析,限制了天然MS在阐明内源性蛋白质复合物中的应用。为了解决这一挑战,我们在这里提出了一个强大的工作流程,该流程将快速有效的内源蛋白复合物亲和分离与敏感的天然MS读数结合在一起。由此产生的工作流程具有提供有关内源蛋白质装配的化学计量和亚基连接性的大量数据的潜力,该信息是成功整合生物系统的结构的关键。

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