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Protein-nucleic acid complexes and the role of mass spectrometry in their structure determination.

机译:蛋白质-核酸复合物及其在结构测定中的作用。

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摘要

Mass spectrometry is now established as a powerful tool for the study of the stoichiometry, interactions, dynamics, and subunit architecture of large protein assemblies and their subcomplexes. Recent evidence has suggested that the 3D structure of protein complexes can be maintained intact in the gas phase, highlighting the potential of ion mobility to contribute to structural biology. A key challenge is to integrate the compositional and structural information from ion mobility mass spectrometry with molecular modelling approaches to produce 3D models of intact protein complexes. In this review, we focus on the mass spectrometry of protein-nucleic acid assemblies with particular attention to the application of ion mobility, an emerging technique in structural studies. We also discuss the challenges that lie ahead for the full integration of ion mobility mass spectrometry with structural biology.
机译:现在,质谱已被确立为研究大型蛋白质装配体及其亚复合物的化学计量,相互作用,动力学和亚基结构的强大工具。最近的证据表明,蛋白质复合物的3D结构可以在气相中保持完整,这突出了离子迁移率有助于结构生物学的潜力。一个关键的挑战是将离子淌度质谱的组成和结构信息与分子建模方法相结合,以生成完整蛋白质复合物的3D模型。在这篇综述中,我们专注于蛋白质-核酸组装体的质谱分析,尤其关注离子迁移的应用,这是结构研究中的一种新兴技术。我们还将讨论将离子淌度质谱与结构生物学完全整合所面临的挑战。

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