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Protein Organic Chemistry and Applications for Labeling and Engineering in Live-Cell Systems

机译:蛋白质有机化学及其在活细胞系统中的标记和工程应用

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摘要

The modification of proteins with synthetic probes is a powerful means of elucidating and engineering the functions of proteins both in vitro and in live cells or in vivo. Herein we review recent progress in chemistry-based protein modification methods and their application in protein engineering, with particular emphasis on the following four strategies: 1) the bioconjugation reactions of amino acids on the surfaces of natural proteins, mainly applied in test-tube settings; 2) the bioorthogonal reactions of proteins with non-natural functional groups; 3) the coupling of recognition and reactive sites using an enzyme or short peptide tag-probe pair for labeling natural amino acids; and 4) ligand-directed labeling chemistries for the selective labeling of endogenous proteins in living systems. Overall, these techniques represent a useful set of tools for application in chemical biology, with the methods 2-4 in particular being applicable to crude (living) habitats. Although still in its infancy, the use of organic chemistry for the manipulation of endogenous proteins, with subsequent applications in living systems, represents a worthy challenge for many chemists.
机译:用合成探针对蛋白质进行修饰是阐明和工程化蛋白质在体外以及在活细胞或体内的功能的有力手段。本文中,我们回顾了基于化学的蛋白质修饰方法及其在蛋白质工程中的应用的最新进展,特别着重以下四个策略:1)天然蛋白质表面上氨基酸的生物缀合反应,主要应用于试管设置中; 2)具有非天然官能团的蛋白质的生物正交反应; 3)使用酶或短肽标签-探针对对识别位点和反应位点进行偶联以标记天然氨基酸; 4)配体指导的标记化学,用于在生命系统中选择性标记内源性蛋白质。总体而言,这些技术代表了一套适用于化学生物学的有用工具,其中方法2-4特别适用于原始(居住)栖息地。尽管仍处于起步阶段,但有机化学用于内源蛋白的操纵以及随后在生命系统中的应用对许多化学家来说都是一个值得挑战的挑战。

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