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用于表位作图的氢氘交换及其他基于质谱的方法。

Hydrogen Deuterium Exchange and other Mass Spectrometry-based Approaches for Epitope Mapping.

作者信息

Jethva Prashant N, Gross Michael L

机构信息

Department of Chemistry, Washington University in St. Louis, St Louis, MO 63130, USA.

出版信息

Front Anal Sci. 2023;3. doi: 10.3389/frans.2023.1118749. Epub 2023 May 18.

Abstract

Antigen-antibody interactions are a fundamental subset of protein-protein interactions responsible for the "survival of the fittest". Determining the interacting interface of the antigen, called an epitope, and that on the antibody, called a paratope, is crucial to antibody development. Because each antigen presents multiple epitopes (unique footprints), sophisticated approaches are required to determine the target region for a given antibody. Although X-ray crystallography, Cryo-EM, and nuclear magnetic resonance can provide atomic details of an epitope, they are often laborious, poor in throughput, and insensitive. Mass spectrometry-based approaches offer rapid turnaround, intermediate structural resolution, and virtually no size limit for the antigen, making them a vital approach for epitope mapping. In this review, we describe in detail the principles of hydrogen deuterium exchange mass spectrometry in application to epitope mapping. We also show that a combination of MS-based approaches can assist or complement epitope mapping and push the limit of structural resolution to the residue level. We describe in detail the MS methods used in epitope mapping, provide our perspective about the approaches, and focus on elucidating the role that HDX-MS is playing now and in the future by organizing a discussion centered around several improvements in prototype instrument/applications used for epitope mapping. At the end, we provide a tabular summary of the current literature on HDX-MS-based epitope mapping.

摘要

抗原-抗体相互作用是蛋白质-蛋白质相互作用的一个基本子集,负责“适者生存”。确定抗原上的相互作用界面(称为表位)以及抗体上的相互作用界面(称为互补位)对于抗体开发至关重要。由于每种抗原都呈现多个表位(独特的印记),因此需要复杂的方法来确定给定抗体的靶区域。尽管X射线晶体学、冷冻电镜和核磁共振可以提供表位的原子细节,但它们通常费力、通量低且灵敏度不高。基于质谱的方法具有快速周转、中等结构分辨率且对抗原几乎没有大小限制的特点,使其成为表位作图的重要方法。在本综述中,我们详细描述了氢氘交换质谱应用于表位作图的原理。我们还表明,基于质谱的方法组合可以辅助或补充表位作图,并将结构分辨率的极限推至残基水平。我们详细描述了表位作图中使用的质谱方法,提供了我们对这些方法的看法,并通过围绕用于表位作图的原型仪器/应用的若干改进组织讨论,重点阐明氢氘交换质谱现在和未来所起的作用。最后,我们提供了基于氢氘交换质谱的表位作图当前文献的表格总结。

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