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Fast photochemical oxidation of proteins (FPOP): A powerful mass spectrometry–based structural proteomics tool

机译:蛋白质的快速光化学氧化(FPOP):基于质谱的强大结构蛋白质组学工具

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摘要

Fast photochemical oxidation of proteins (FPOP) is a MS-based method that has proved useful in studies of protein structures, interactions, conformations, and protein folding. The success of this method relies on the irreversible labeling of solvent-exposed amino acid side chains by hydroxyl radicals. FPOP generates these radicals through laser-induced photolysis of hydrogen peroxide. The data obtained provide residue-level resolution of protein structures and interactions on the microsecond timescale, enabling investigations of fast processes such as protein folding and weak protein–protein interactions. An extensive comparison between FPOP and other footprinting techniques gives insight on their complementarity as well as the robustness of FPOP to provide unique structural information once unattainable. The versatility of this method is evidenced by both the heterogeneity of samples that can be analyzed by FPOP and the myriad of applications for which the method has been successfully used: from proteins of varying size to intact cells. This review discusses the wide applications of this technique and highlights its high potential. Applications including, but not limited to, protein folding, membrane proteins, structure elucidation, and epitope mapping are showcased. Furthermore, the use of FPOP has been extended to probing proteins in cells and in vivo. These promising developments are also presented herein.
机译:蛋白质的快速光化学氧化(FPOP)是一种基于MS的方法,已被证明可用于蛋白质结构,相互作用,构象和蛋白质折叠的研究。该方法的成功取决于羟基自由基对溶剂暴露的氨基酸侧链的不可逆标记。 FPOP通过激光诱导的过氧化氢光解产生这些自由基。所获得的数据在微秒级的时间尺度上提供了蛋白质结构和相互作用的残基级分辨率,从而使人们能够研究快速过程,例如蛋白质折叠和弱蛋白质-蛋白质相互作用。 FPOP与其他足迹技术之间的广泛比较提供了关于它们的互补性以及FPOP的健壮性的见解,以提供一旦无法获得的独特结构信息。该方法的多功能性可以通过FPOP分析的样品的异质性以及成功使用该方法的多种应用得到证明:从大小不同的蛋白质到完整的细胞。这篇评论讨论了该技术的广泛应用并强调了其高潜力。展示了包括但不限于蛋白质折叠,膜蛋白,结构阐明和表位作图的应用。此外,FPOP的用途已扩展到探测细胞和体内的蛋白质。这些有希望的发展也将在本文中介绍。

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