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嗜热-嗜温酶对中动力学与催化作用之间的联系

Linkage between dynamics and catalysis in a thermophilic-mesophilic enzyme pair.

作者信息

Wolf-Watz Magnus, Thai Vu, Henzler-Wildman Katherine, Hadjipavlou Georgia, Eisenmesser Elan Z, Kern Dorothee

机构信息

Department of Biochemistry, Brandeis University, Waltham, Massachusetts 02454, USA.

出版信息

Nat Struct Mol Biol. 2004 Oct;11(10):945-9. doi: 10.1038/nsmb821. Epub 2004 Aug 29.

Abstract

A fundamental question is how enzymes can accelerate chemical reactions. Catalysis is not only defined by actual chemical steps, but also by enzyme structure and dynamics. To investigate the role of protein dynamics in enzymatic turnover, we measured residue-specific protein dynamics in hyperthermophilic and mesophilic homologs of adenylate kinase during catalysis. A dynamic process, the opening of the nucleotide-binding lids, was found to be rate-limiting for both enzymes as measured by NMR relaxation. Moreover, we found that the reduced catalytic activity of the hyperthermophilic enzyme at ambient temperatures is caused solely by a slower lid-opening rate. This comparative and quantitative study of activity, structure and dynamics revealed a close link between protein dynamics and catalytic turnover.

摘要

一个基本问题是酶如何加速化学反应。催化作用不仅由实际的化学步骤定义,还由酶的结构和动力学定义。为了研究蛋白质动力学在酶促周转中的作用,我们在催化过程中测量了腺苷酸激酶嗜热同源物和嗜温同源物中特定残基的蛋白质动力学。通过核磁共振弛豫测量发现,一个动态过程,即核苷酸结合盖子的打开,对两种酶来说都是限速步骤。此外,我们发现嗜热酶在环境温度下催化活性降低完全是由盖子打开速率较慢所致。这项关于活性、结构和动力学的比较性定量研究揭示了蛋白质动力学与催化周转之间的紧密联系。

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