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Intein-mediated ligation and cyclization of expressed proteins.

机译:内含子介导的表达蛋白的连接和环化。

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Protein splicing is a posttranslational processing event that releases an internal protein sequence from a protein precursor. During the splicing process the internal protein sequence, termed an intein, embedded in the protein precursor self-catalyzes its excision and the ligation of the flanking protein regions, termed exteins. The dissection of the splicing pathway, which involves the precise cleavage and formation of peptide bonds, and the identification of key catalytic residues at the splice junctions have led to the modulation of the protein splicing process as a protein engineering tool. Novel strategies have been developed to use intein-catalyzed reactions for the production and manipulation of proteins and peptides. These new approaches have broken down the size limitation barrier of chemical synthetic methods and are less technically demanding. The purpose of this article is to describe how to use self-splicing inteins in protein semisynthesis and backbone cyclization. The first two sections of the article provide a brief review of the distinct chemical steps that underlie protein splicing and intein enabled technology. Copyright 2001 Academic Press.
机译:蛋白质剪接是翻译后加工事件,其从蛋白质前体释放内部蛋白质序列。在剪接过程中,嵌入蛋白质前体中的内部蛋白序列(称为内含肽)会自催化其切除,并连接侧翼蛋白区域(称为蛋白)。剪接路径的解剖涉及到精确的切割和肽键的形成,以及在剪接连接处关键催化残基的鉴定,导致了对作为蛋白质工程工具的蛋白质剪接过程的调节。已经开发出新的策略来使用内含蛋白催化的反应来产生和操纵蛋白质和肽。这些新方法打破了化学合成方法的尺寸限制壁垒,并且在技术上要求较低。本文的目的是描述如何在蛋白质半合成和主链环化中使用自剪接内含肽。本文的前两节简要回顾了蛋白质剪接和内含肽技术的基础化学步骤。版权所有2001,学术出版社。

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