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立体保留的翻译后蛋白质编辑

Stereoretentive Post-Translational Protein Editing.

作者信息

Fu Xia-Ping, Yuan Yizhi, Jha Ajay, Levin Nikita, Giltrap Andrew M, Ren Jack, Mamalis Dimitrios, Mohammed Shabaz, Davis Benjamin G

机构信息

Rosalind Franklin Institute, Harwell, Oxfordshire OX11 0QX, United Kingdom.

Department of Pharmacology, University of Oxford, Oxford OX1 3QT, United Kingdom.

出版信息

ACS Cent Sci. 2023 Feb 24;9(3):405-416. doi: 10.1021/acscentsci.2c00991. eCollection 2023 Mar 22.

Abstract

Chemical post-translational methods allow convergent side-chain editing of proteins without needing to resort to genetic intervention. Current approaches that allow the creation of constitutionally native side chains via C-C bond formation, using off-protein carbon-centered C· radicals added to unnatural amino acid radical acceptor (SOMOphile, singly occupied molecular orbital (SOMO)) "tags" such as dehydroalanine, are benign and wide-ranging. However, they also typically create epimeric mixtures of d/l-residues. Here, we describe a light-mediated desulfurative method that, through the creation and reaction of stereoretained l-alanyl C· radicals, allows C-H, C-O, C-Se, C-B, and C-C bond formation to flexibly generate site-selectively edited proteins with full retention of native stereochemistry under mild conditions from a natural amino acid precursor. This methodology shows great potential to explore protein side-chain diversity and function and in the construction of useful bioconjugates.

摘要

化学翻译后修饰方法允许在无需借助基因干预的情况下对蛋白质进行侧链汇聚式编辑。目前通过向非天然氨基酸自由基受体(亲单占据分子轨道,SOMOphile,单占据分子轨道,SOMO)“标签”(如脱氢丙氨酸)添加脱蛋白碳中心C·自由基,经由C-C键形成来创建结构上天然的侧链的方法,具有良好的适应性且应用广泛。然而,它们通常也会产生d/l-残基的差向异构体混合物。在此,我们描述了一种光介导的脱硫方法,该方法通过立体保留的l-丙氨酰C·自由基的产生和反应,在温和条件下从天然氨基酸前体出发,实现C-H、C-O、C-Se、C-B和C-C键的形成,以灵活地生成位点选择性编辑的蛋白质,同时完全保留天然立体化学结构。该方法在探索蛋白质侧链多样性和功能以及构建有用的生物共轭物方面显示出巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6eaf/10037454/7eb2d4abaa7f/oc2c00991_0001.jpg

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