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High-Resolution Hydroxyl Radical Protein Footprinting: Biophysics Tool for Drug Discovery
Annual Review of Biophysics ( IF 10.4 ) Pub Date : 2018-05-24 00:00:00 , DOI: 10.1146/annurev-biophys-070317-033123
Janna Kiselar 1 , Mark R Chance 1
Affiliation  

Hydroxyl radical footprinting (HRF) of proteins with mass spectrometry (MS) is a widespread approach for assessing protein structure. Hydroxyl radicals react with a wide variety of protein side chains, and the ease with which radicals can be generated (by radiolysis or photolysis) has made the approach popular with many laboratories. As some side chains are less reactive and thus cannot be probed, additional specific and nonspecific labeling reagents have been introduced to extend the approach. At the same time, advances in liquid chromatography and MS approaches permit an examination of the labeling of individual residues, transforming the approach to high resolution. Lastly, advances in understanding of the chemistry of the approach have led to the determination of absolute protein topologies from HRF data. Overall, the technology can provide precise and accurate measures of side-chain solvent accessibility in a wide range of interesting and useful contexts for the study of protein structure and dynamics in both academia and industry.

中文翻译:


高分辨率羟基自由基蛋白足迹:药物发现的生物物理学工具

使用质谱 (MS) 对蛋白质进行羟基自由基足迹 (HRF) 是评估蛋白质结构的广泛方法。羟基自由基与多种蛋白质侧链发生反应,并且容易产生自由基(通过辐射分解或光解)使该方法受到许多实验室的欢迎。由于一些侧链反应性较低,因此无法探测,因此引入了额外的特异性和非特异性标记试剂来扩展该方法。同时,液相色谱和 MS 方法的进步允许检查单个残留物的标记,从而将方法转变为高分辨率。最后,对该方法的化学理解的进步导致了从 HRF 数据中确定绝对蛋白质拓扑结构。全面的,

更新日期:2018-05-24
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