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From thiol-subtilisin to omniligase: Design and structure of a broadly applicable peptide ligase

机译:从硫醇 - 枯草杆菌蛋白酶到Omniligase:广义适用的肽连接酶的设计和结构

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摘要

Omniligase-1 is a broadly applicable enzyme for peptide bond formation between an activated acyl donor peptide and a non-protected acyl acceptor peptide. The enzyme is derived from an earlier subtilisin variant called peptiligase by several rounds of protein engineering aimed at increasing synthetic yields and substrate range. To examine the contribution of individual mutations on S/H ratio and substrate scope in peptide synthesis, we selected peptiligase variant M222P/L217H as a starting enzyme and introduced successive mutations. Mutation A225N in the S1′ pocket and F189W of the S2′ pocket increased the synthesis to hydrolysis (S/H) ratio and overall coupling efficiency, whereas the I107V mutation was added to S4 pocket to increase the reaction rate. The final omniligase variants appeared to have a very broad substrate range, coupling more than 250 peptides in a 400-member library of acyl acceptors, as indicated by a high-throughput FRET assay. Crystal structures and computational modelling could rationalize the exceptional properties of omniligase-1 in peptide synthesis
机译:Omniligase-1是用于活化的酰基供体肽和非保护酰基受体肽之间的肽键形成的广义适用的酶。通过若干轮蛋白工程衍生自枯草芽孢蛋白变体的早期枯草杆菌蛋白变体,其旨在增加合成产率和基材范围。为了检查单个突变对肽合成中S / H比和底物范围的贡献,我们选择肽酶变体M222P / L217H作为起始酶并引入连续突变。 S1'口袋中的突变A225N和S2口袋的F189W增加了合成到水解(S / H)比和总耦合效率,而将I107V突变加入到S4口袋中以增加反应速率。最终的综合酶变体似乎具有非常宽的基板范围,在400-成员酰基受体中偶联了大于250个肽,如高通量FRET测定所示。晶体结构和计算建模可以合理化肽合成中Omniligase-1的特殊性质

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