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Hydrogen/Deuterium Exchange-Mass Spectrometry: A Powerful Tool for Probing Protein Structure, Dynamics and Interactions

机译:氢/氘交换质谱:探测蛋白质结构,动力学和相互作用的强大工具

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Knowledge of the structure and dynamics of proteins and protein assemblies is critical both for understanding the molecular basis of physiological and patho-physiological processes and for guiding drug design. While X-ray crystallography and nuclear magnetic resonance spectroscopy are both excellent techniques for this purpose, both suffer from limitations, including the requirement for high quality crystals and large amounts of material. Recently, hydrogen/deuterium exchange measured using mass spectrometry (HXMS) has emerged as a powerful new tool for the study of protein structure, dynamics and interactions in solution. HXMS exploits the fact that backbone amide hydrogens can exchange with deuterium when a protein is incubated in D2O, and that the rate of the exchange process is highly dependent on the local structural environment. Several features of HXMS make it an especially attractive approach, including small sample requirements and the ability to study extremely large protein assemblies that are not amenable to other techniques. Here, we provide an overview of HXMS and describe several recent applications to problems of medical interest. After reviewing the molecular basis of the H/D exchange process, the different steps of the HXMS experiment - labeling, rapid proteolysis, fragment separation and mass measurement - are described, followed by a discussion of data analysis methods. Finally, we describe recent results on the application of HXMS to 1) mapping drug/inhibitor binding sites and detecting drug induced conformational changes, 2) studying viral capsid structure and assembly, and 3) characterizing the structure of pathological protein conformations, specifically amyloid fibrils.
机译:蛋白质和蛋白质装配体的结构和动力学知识对于理解生理和病理生理过程的分子基础以及指导药物设计都至关重要。尽管X射线晶体学和核磁共振波谱学都是达到这一目的的出色技术,但它们都受到局限,包括对高质量晶体和大量材料的需求。最近,使用质谱仪(HXMS)测量的氢/氘交换已成为研究溶液中蛋白质结构,动力学和相互作用的强大新工具。 HXMS利用以下事实:在D2O中孵育蛋白质时,主链酰胺氢可与氘交换,并且交换过程的速率高度依赖于局部结构环境。 HXMS的一些功能使其成为一种特别有吸引力的方法,包括样品需求量小以及能够研究不适用于其他技术的非常大的蛋白质装配体的能力。在这里,我们提供了HXMS的概述,并描述了对医学感兴趣的问题的几种最新应用。在回顾了H / D交换过程的分子基础之后,描述了HXMS实验的不同步骤-标记,快速蛋白水解,片段分离和质量测量-然后讨论了数据分析方法。最后,我们描述了有关HXMS在以下方面的应用的最新结果:1)绘制药物/抑制剂结合位点并检测药物诱导的构象变化,2)研究病毒衣壳的结构和组装,以及3)表征病理性蛋白质构象的结构,特别是淀粉样蛋白原纤维。

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