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酶促肽和蛋白质连接的发展与应用。

Development and applications of enzymatic peptide and protein ligation.

作者信息

Cui Yan, Han Dongyang, Bai Xuerong, Shi Weiwei

机构信息

Ministry of Education Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology, Department of Chemistry, Tsinghua University, Beijing, China.

出版信息

J Pept Sci. 2025 Feb;31(2):e3657. doi: 10.1002/psc.3657. Epub 2024 Oct 21.

Abstract

Chemical synthesis of complex peptides and proteins continues to play increasingly important roles in industry and academia, where strategies for covalent ligation of two or more peptide fragments to produce longer peptides and proteins in convergent manners have become critical. In recent decades, efficient and site-selective ligation strategies mediated by exploiting the biocatalytic capacity of nature's diverse toolkit (i.e., enzymes) have been widely recognized as a powerful extension of existing chemical strategies. In this review, we present a chronological overview of the development of proteases, transpeptidases, transglutaminases, and ubiquitin ligases. We survey the different properties between the ligation reactions of various enzymes, including the selectivity and efficiency of the reaction, the ligation "scar" left in the product, the type of amide bond formed (natural or isopeptide), the synthetic availability of the reactants, and whether the enzymes are orthogonal to another. This review also describes how the inherent specificity of these enzymes can be exploited for peptide and protein ligation.

摘要

复杂肽和蛋白质的化学合成在工业和学术界继续发挥着越来越重要的作用,在这些领域中,将两个或更多肽片段以汇聚方式共价连接以产生更长肽和蛋白质的策略已变得至关重要。近几十年来,通过利用自然界多样工具包(即酶)的生物催化能力介导的高效且位点选择性连接策略,已被广泛认为是现有化学策略的有力扩展。在本综述中,我们按时间顺序概述了蛋白酶、转肽酶、转谷氨酰胺酶和泛素连接酶的发展。我们考察了各种酶连接反应之间的不同特性,包括反应的选择性和效率、产物中留下的连接“疤痕”、形成的酰胺键类型(天然或异肽键)、反应物的合成可用性以及这些酶是否相互正交。本综述还描述了如何利用这些酶的固有特异性进行肽和蛋白质连接。

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