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Fast Amide Bond Cleavage Assisted by a Secondary Amino and a Carboxyl Group—A Model for yet Unknown Peptidases?

机译:由仲氨基和羧基辅助的快速酰胺键切割-一种未知肽酶的模型吗?

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摘要

Unconstrained amides that undergo fast hydrolysis under mild conditions are valuable sources of information about how amide bonds may be activated in enzymatic transformations. We report a compound possessing an unconstrained amide bond surrounded by an amino and a carboxyl group, each mounted in close proximity on a bicyclic scaffold. Fast amide hydrolysis of this model compound was found to depend on the presence of both the amino and carboxyl functions, and to involve a proton transfer in the rate-limiting step. Possible mechanisms for the hydrolytic cleavage and their relevance to peptide bond cleavage catalyzed by natural enzymes are discussed. Experimental observations suggest that the most probable mechanisms of the model compound hydrolysis might include a twisted amide intermediate and a rate-determining proton transfer.
机译:在温和条件下经历快速水解的不受约束的酰胺是有关酰胺键如何在酶促转化中被活化的有价值的信息来源。我们报道了一种化合物,其具有被氨基和羧基包围的不受约束的酰胺键,每一个都紧密相邻地安装在双环支架上。发现该模型化合物的酰胺快速水解取决于氨基和羧基官能团的存在,并且在限速步骤中涉及质子转移。讨论了可能的水解裂解机理及其与天然酶催化的肽键裂解的相关性。实验观察表明,模型化合物水解的最可能机理可能包括扭曲的酰胺中间体和决定质子转移的速率。

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