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Cofactor-Mediated Nucleophilic Substitution Catalyzed by a Self-Assembled Holoenzyme Mimic

机译:Cofactor介导的通过自组装的全酶模拟催化的亲核代替

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摘要

A self-assembled Fe4L6 cage is capable of co-encapsulating multiple carboxylic acid containing guests in its cavity, and these acids can act as cofactors for cage-catalyzed nucleophilic substitutions. The kinetics of the substitution reaction depend on the size, shape, and binding affinity of each of the components, and small structural changes in guest size can have large effects on the reaction. The host is quite promiscuous and is capable of binding multiple guests with micromolar binding affinities while retaining the ability to effect turnover and catalysis. Substrate binding modes vary widely, from simple 1:1 complexes to 1:2 complexes that can show either negative or positive cooperativity, depending on the guest. The molecularity of the dissociative substitution reaction varies, depending on the electrophile leaving group, acid cofactor, and nucleophile size: small changes in the nature of substrate can have large effects on reaction kinetics, all controlled by selective molecular recognition in the cage interior.
机译:自组装的Fe4L6笼子能够共同包封含有含有腔体的多个羧酸,并且这些酸可作为笼催化亲核取代的辅助型。取代反应的动力学取决于每个组分的尺寸,形状和结合亲和力,而客人大小的小结构变化可能对反应产生很大的影响。主持人是非常混杂的,并且能够在微摩尔结合亲中结合多个客人,同时保留实现周转和催化的能力。底物结合模式广泛变化,从简单的1:1配合物到1:2络合物,这取决于客人,可以显示为负或正合作的合作效应。取决于电泳剂的分离取代反应的分子变化,取决于亲电离基团,酸辅助acoctor和亲核试剂尺寸:底物性质的小变化可以对反应动力学具有很大的影响,所有这些都通过在笼内选择性分子识别来控制。

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