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Catalytic Mechanism of Diaminopimelate Epimerase: A QM/MM Investigation

机译:二氨基庚二酸酯差向异构酶的催化机理:QM / MM研究

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A QM/MM investigation, based on a DFT(B3LYP)//Amber-ff99 potential, has been carried out to elucidate the mechanism of diaminopimelate epimerase. This enzyme catalyzes the reversible stereoconversion of one of the two stereocenters of diaminopimelate and represents a promising target for rational drug design aimed to develop new selective antibacterial therapeutic agents. The QM/MM computations show that the reaction proceeds through a highly asynchronous mechanism where the side-chain of a negatively charged Cys-73 (thiolate) deprotonates the a-carbon substrate. Simultaneously, the Cys-217 thiolic proton moves toward the same carbon atom on the opposite face, thus determining the configuration inversion. A fingerprint analysis provides a detailed description of the influence of the various residues surrounding the active site and clearly shows the electrostatic nature of the most important contributions to the catalysis.
机译:已经进行了基于DFT(B3LYP)// Amber-ff99电位的QM / MM研究,以阐明二氨基庚二酸酯差向异构酶的机制。该酶催化二氨基庚二酸酯的两个立体中心之一的可逆立体转化,并且是旨在开发新的选择性抗菌治疗剂的合理药物设计的有希望的目标。 QM / MM计算表明,反应是通过高度异步的机理进行的,其中带负电荷的Cys-73(硫醇盐)的侧链使α-碳底物去质子化。同时,Cys-217巯基质子朝相反面的相同碳原子移动,从而确定构型反转。指纹分析提供了活性位点周围各种残基的影响的详细描述,并清楚显示了对催化作用最重要的静电性质。

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