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利用计算方法理解高度混杂的 MbtI 的不同活性。

Understanding the different activities of highly promiscuous MbtI by computational methods.

机构信息

Departament de Química Física i Analítica, Universitat Jaume I, 12071 Castelló, Spain.

出版信息

Phys Chem Chem Phys. 2012 Mar 14;14(10):3482-9. doi: 10.1039/c2cp23149b. Epub 2012 Feb 3.

Abstract

Salicylate synthase from Mycobacterium tuberculosis, MbtI, is a highly promiscuous Mg(2+) dependent enzyme with up to four distinct activities detected in vitro: isochorismate synthase (IS), isochorismate pyruvate lyase (IPL), salicylate synthase (SS) and chorismate mutase (CM). In this paper, Molecular Dynamic (MD) simulations employing hybrid quantum mechanics/molecular mechanics (QM/MM) potentials have been carried out to get a detailed knowledge of the IS and the IPL activities at the molecular level. According to our simulations, the architecture of the MbtI active site allows catalyzing the two reactions: the isochorismate formation, by means of a stepwise mechanism, and the salicylate production from isochorismate, that appears to be pericyclic in nature. Findings also explain the role of the magnesium cation and the pH dependence activity experimentally observed in MbtI. Mg(2+) would be polarizing and pre-organizing the substrate and active site, as well as shifting the pK(a) values of key active site residues.

摘要

结核分枝杆菌水杨酸合酶(MbtI)是一种高度混杂的依赖于 Mg2+ 的酶,在体外检测到多达四种不同的活性:异分支酸合酶(IS)、异分支酸丙酮酸裂解酶(IPL)、水杨酸合酶(SS)和分支酸变位酶(CM)。在本文中,采用混合量子力学/分子力学(QM/MM)势能的分子动力学(MD)模拟已在分子水平上对 IS 和 IPL 活性进行了详细的研究。根据我们的模拟,MbtI 活性位点的结构允许催化两种反应:异分支酸的形成,通过逐步机制,以及异分支酸产生水杨酸,这似乎是周环性质的。研究结果还解释了实验中观察到的镁阳离子和 pH 值对 MbtI 活性的作用。Mg2+ 可以极化和预组织底物和活性位点,并改变关键活性位点残基的 pK(a) 值。

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