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The use of unnatural amino acids to study and engineer protein function

机译:使用非天然氨基酸来研究和工程化蛋白质功能

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摘要

The expansion of the genetic code for the incorporation of unnatural amino acids (UAAs) in proteins of bacteria, yeasts, mammalian cells or whole animals provides molecular and structural biologists with an amazing kit of novel tools. UAAs can be used to investigate the structure and dynamics of proteins, to study their interactions or to control their activity in living cells. Incorporation of UAAs with bioorthogonal reactivity facilitates the site-specific installation of labels for spectroscopy and microscopy. Light-activatable crosslinker UAAs can be used to trap interacting molecules in living cells with a precision almost at the structural level. Post-translational modifications such as lysine acetylation and serine phosphorylation can be directly encoded to analyse their impact on protein function, and caging groups can be installed on critical residues to create light-activatable proteins. In this review we highlight recent applications of this technology to investigate protein function.
机译:用于在细菌,酵母,哺乳动物细胞或整个动物的蛋白质中掺入非天然氨基酸(UAA)的遗传密码的扩展,为分子和结构生物学家提供了一套了不起的新颖工具。 UAA可用于研究蛋白质的结构和动力学,研究其相互作用或控制其在活细胞中的活性。将UAA与生物正交反应性结合使用有助于在特定位置安装光谱学和显微镜检查标签。可光活化的交联剂UAA几乎可以在结构水平上用于捕获活细胞中的相互作用分子。可以直接编码翻译后修饰(例如赖氨酸乙酰化和丝氨酸磷酸化)以分析它们对蛋白质功能的影响,并且可以在关键残基上安装笼基基团以产生可光激活的蛋白质。在这篇综述中,我们重点介绍了这项技术在研究蛋白质功能方面的最新应用。

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