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从蛋白质全合成到肽的转酰胺和重排反应:玩转 N,S-酰基或 N,Se-酰基迁移反应的可逆性。

From protein total synthesis to peptide transamidation and metathesis: playing with the reversibility of N,S-acyl or N,Se-acyl migration reactions.

机构信息

UMR CNRS 8161 Pasteur Institute of Lille, Université de Lille, 1 rue du Pr Calmette, 59021 Lille, France.

UMR CNRS 8161 Pasteur Institute of Lille, Université de Lille, 1 rue du Pr Calmette, 59021 Lille, France.

出版信息

Curr Opin Chem Biol. 2014 Oct;22:137-45. doi: 10.1016/j.cbpa.2014.09.030. Epub 2014 Oct 14.

Abstract

Amide forming reactions are central to the field of peptide and protein synthesis and are considered to be poorly reversible reactions owing to the high stability of peptide bonds. One amide-forming reaction is native chemical ligation (NCL) which is driven by a sulfur to nitrogen acyl migration process from a transient thioester intermediate. However, recent studies have revealed the reversibility of the S,N-acyl shift reaction or of the related Se,N-acyl shift process using mild aqueous conditions. Such chemical processes have great potential for the chemoselective formation of peptide bonds to cysteine or selenocysteine, and open novel avenues in the field of peptide transamidation and metathesis reactions.

摘要

酰胺形成反应是肽和蛋白质合成领域的核心,由于肽键的高度稳定性,这些反应被认为是不可逆的。酰胺形成反应之一是天然化学连接(NCL),它是由硫到氮的酰基迁移过程从瞬态硫酯中间体驱动的。然而,最近的研究表明,在温和的水条件下,S,N-酰基移位反应或相关的 Se,N-酰基移位过程是可逆的。这些化学过程在半胱氨酸或硒代半胱氨酸的选择性肽键形成方面具有巨大的潜力,并为肽转酰胺化和变位反应领域开辟了新途径。

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