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Native mass spectrometry-A valuable tool in structural biology

机译:本机质谱 - 结构生物学中的宝贵工具

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摘要

Proteins and the complexes they form with their ligands are the players of cellular action. Their function is directly linked with their structure making the structural analysis of protein-ligand complexes essential. Classical techniques of structural biology include X-ray crystallography, nuclear magnetic resonance spectroscopy and recently distinguished cryo-electron microscopy. However, protein-ligand complexes are often dynamic and heterogeneous and consequently challenging for these techniques. Alternative approaches are therefore needed and gained importance during the last decades. One alternative is native mass spectrometry, which is the analysis of intact protein complexes in the gas phase. To achieve this, sample preparation and instrument conditions have to be optimised. Native mass spectrometry then reveals stoichiometry, protein interactions and topology of protein assemblies. Advanced techniques such as ion mobility and high-resolution mass spectrometry further add to the range of applications and deliver information on shape and microheterogeneity of the complexes. In this tutorial, we explain the basics of native mass spectrometry including sample requirements, instrument modifications and interpretation of native mass spectra. We further discuss the developments of native mass spectrometry and provide example spectra and applications.
机译:蛋白质和它们与它们的配体形成的复合物是细胞作用的球员。它们的功能与它们的结构直接相关,使得蛋白质 - 配体复合物的结构分析必不可少。结构生物学的经典技术包括X射线晶体学,核磁共振光谱和最近区分的低温电子显微镜。然而,蛋白质 - 配体配合物通常是动态和异质的,因此对这些技术进行挑战。因此,在过去几十年中需要替代方法并获得重要性。一种替代方案是天然质谱,这是在气相中的完整蛋白质复合物分析。为实现这一点,必须优化样品制备和仪器条件。然后,本地质谱揭示化学计量,蛋白质相互作用和蛋白质组件的拓扑。如离子迁移率和高分辨率质谱等先进技术进一步加入到应用范围内,并提供有关复合物的形状和微孔的信息。在本教程中,我们解释了本地质谱的基础知识,包括样品要求,仪器修改和天然质谱的解释。我们进一步讨论了天然质谱的发展,并提供了实施例光谱和应用。

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