Department of Pharmaceutical Sciences, University of Maryland, Baltimore, Maryland 21201, United States.
Chem Rev. 2022 Apr 27;122(8):7532-7561. doi: 10.1021/acs.chemrev.1c00432. Epub 2021 Oct 11.
Hydroxyl radical protein footprinting (HRPF) coupled to mass spectrometry has been successfully used to investigate a plethora of protein-related questions. The method, which utilizes hydroxyl radicals to oxidatively modify solvent-accessible amino acids, can inform on protein interaction sites and regions of conformational change. Hydroxyl radical-based footprinting was originally developed to study nucleic acids, but coupling the method with mass spectrometry has enabled the study of proteins. The method has undergone several advancements since its inception that have increased its utility for more varied applications such as protein folding and the study of biotherapeutics. In addition, recent innovations have led to the study of increasingly complex systems including cell lysates and intact cells. Technological advances have also increased throughput and allowed for better control of experimental conditions. In this review, we provide a brief history of the field of HRPF and detail recent innovations and applications in the field.
羟基自由基蛋白质足迹分析(HRPF)与质谱联用已成功用于研究大量与蛋白质相关的问题。该方法利用羟基自由基氧化修饰溶剂可及的氨基酸,可提供蛋白质相互作用位点和构象变化区域的信息。基于羟基自由基的足迹分析最初是为研究核酸而开发的,但将该方法与质谱联用使得蛋白质的研究成为可能。自成立以来,该方法经历了几次改进,增加了其在更广泛应用中的实用性,例如蛋白质折叠和生物治疗剂的研究。此外,最近的创新使得研究越来越复杂的系统成为可能,包括细胞裂解物和完整细胞。技术进步还提高了通量,并允许更好地控制实验条件。在这篇综述中,我们简要介绍了 HRPF 领域的历史,并详细介绍了该领域的最新创新和应用。