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关于生物催化的一种观点。

A perspective on biological catalysis.

作者信息

Cannon W R, Singleton S F, Benkovic S J

机构信息

Department of Chemistry, Pennsylvania State University, University Park 16802, USA.

出版信息

Nat Struct Biol. 1996 Oct;3(10):821-33. doi: 10.1038/nsb1096-821.

Abstract

We have analysed enzyme catalysis through a re-examination of the reaction coordinate. The ground state of the enzyme-substrate complex is shown to be related to the transition state through the mean force acting along the reaction path; as such, catalytic strategies cannot be resolved into ground state destabilization versus transition state stabilization. We compare the role of active-site residues in the chemical step with the analogous role played by solvent molecules in the environment of the noncatalysed reaction. We conclude that enzyme catalysis is significantly enhanced by the ability of the enzyme to preorganize the reaction environment. This complementation of the enzyme to the substrate's transition state geometry acts to eliminate the slow components of solvent reorganization required for reactions in aqueous solution. Dramatically strong binding of the transition state geometry is not required.

摘要

我们通过重新审视反应坐标来分析酶催化作用。酶 - 底物复合物的基态通过沿反应路径作用的平均力与过渡态相关;因此,催化策略不能简单地归结为基态去稳定化与过渡态稳定化。我们将活性位点残基在化学步骤中的作用与非催化反应环境中溶剂分子所起的类似作用进行了比较。我们得出结论,酶预先组织反应环境的能力显著增强了酶催化作用。酶对底物过渡态几何结构的这种互补作用有助于消除水溶液中反应所需的溶剂重组的缓慢成分。并不需要过渡态几何结构有极强的结合。

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