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脆弱拟杆菌双核锌金属β-内酰胺酶CcrA催化机制及抑制作用的量子力学/分子力学混合方法与密度泛函理论研究

Hybrid QM/MM and DFT investigations of the catalytic mechanism and inhibition of the dinuclear zinc metallo-beta-lactamase CcrA from Bacteroides fragilis.

作者信息

Park Hwangseo, Brothers Edward N, Merz Kenneth M

机构信息

Department of Chemistry, 104 Chemistry Building, Pennsylvania State University, University Park, Pennsylvania 16802-6300, USA.

出版信息

J Am Chem Soc. 2005 Mar 30;127(12):4232-41. doi: 10.1021/ja042607b.

Abstract

Based on hybrid QM/MM molecular dynamics simulation and density functional theoretical (DFT) calculations, we investigate the mechanistic and energetic features of the catalytic action of dizinc metallo-beta-lactamase CcrA from Bacteroides fragilis. The 200 ps QM/MM simulation of the CcrA enzyme in complex with nitrocefin shows that the substrate beta-lactam moiety is directed toward the active site dizinc center through the interactions of aminocarbonyl and carboxylate groups with the two active site zinc ions and the two conserved residues, Lys167 and Asn176. From the determination of the potential energy profile of a relevant enzymatic reaction model, it is found that the nucleophilic displacement reaction step proceeds with a low-barrier height, leading to the formation of an energetically favored reaction intermediate. The results also show that the high catalytic activity of the CcrA enzyme stems from a simultaneous operation of three catalytic components: activation of the bridging hydroxide nucleophile by zinc-coordinated Asp86; polarization of the substrate aminocarbonyl group by the first zinc ion; stabilization of the negative charge developed on the departing amide nitrogen by the second zinc ion. Consistent with the previous experimental finding that the proton-transfer reaction step is rate-limiting, the activation energy of the second step is found to be 1.6 kcal/mol higher than that of the first step. Finally, through an examination of the structural and energetic features of binding of a thiazolidinecarboxylic acid inhibitor to the active site dizinc center, a two-step inhibition mechanism involving a protonation-induced ligand exchange reaction is proposed for the inhibitory action of a tight-binding inhibitor possessing a thiol group.

摘要

基于混合量子力学/分子力学(QM/MM)分子动力学模拟和密度泛函理论(DFT)计算,我们研究了脆弱拟杆菌中双锌金属β-内酰胺酶CcrA催化作用的机理和能量特征。CcrA酶与头孢硝噻吩复合物的200皮秒QM/MM模拟表明,底物β-内酰胺部分通过氨基羰基和羧基与两个活性位点锌离子以及两个保守残基Lys167和Asn176的相互作用,被导向活性位点双锌中心。通过确定相关酶促反应模型的势能分布,发现亲核取代反应步骤以低势垒高度进行,导致形成能量上有利的反应中间体。结果还表明,CcrA酶的高催化活性源于三种催化成分的同时作用:锌配位的Asp86激活桥连氢氧化物亲核试剂;第一个锌离子使底物氨基羰基极化;第二个锌离子稳定离去酰胺氮上产生的负电荷。与先前实验发现质子转移反应步骤是限速步骤一致,发现第二步的活化能比第一步高1.6千卡/摩尔。最后,通过研究噻唑烷羧酸抑制剂与活性位点双锌中心结合的结构和能量特征,提出了一种涉及质子化诱导配体交换反应的两步抑制机制,用于具有硫醇基团的紧密结合抑制剂的抑制作用。

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