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首页> 外文期刊>Inorganica Chimica Acta >A theoretical study of the methyl ligation in tetraaza macrocycle nickel complexes which model the acetyl-CoA synthase active site
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A theoretical study of the methyl ligation in tetraaza macrocycle nickel complexes which model the acetyl-CoA synthase active site

机译:对四氮杂大环镍配合物中的甲基连接进行理论研究,该配合物模拟了乙酰辅酶A合酶活性位点

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Recently, great attention has been devoted to the study of structural and functional features of the Cluster A of CO dehydrogenase/acetyl-CoA synthase as well as of several synthetic complexes which may serve as model systems (S.W. Ragsdale and C.G. Riordan, J. Biol. Chem., 1 (1996) 489). It has been shown experimentally that all these systems are capable of performing alkyl transfer reactions, but a general consensus concerning the reaction mechanism has not yet been reached. The aim of this study was the theoretical investigation, by means of the Hartree-Fock (HF) method, of the methyl ligation reaction to tetraaza macrocycle nickel complexes. To this end, the Hartree-Fock computational approach was first tested by comparing its results with those obtained experimentally and using other theoretical approaches. Once demonstrated that, for this class of compounds, Hartree-Fock calculations produce structural and energetic data fairly accurately, the study was extended to the investigation of possible methyl ligation paths to the RRRR and RRSS configurational isomers of [Ni(cyclam)] complexes. These reactions are discussed considering the geometries of the nickel complexes which correspond to optimum ab initio structures as well as the associated reaction energies and electron and spin distribution. Our theoretical results indicate that (i) the methyl transfer reaction is highly unfavoured for NI(II) complexes, (ii) the most probable mechanism of methyl ligation involves methyl radical transfer, in agreement with some proposals based on experimental observations, and (iii) the RRRR [Ni(cyclam)] isomer undergoes a more exothermic methyl ligation reaction with respect to the RRSS isomer. Furthermore, this difference in reactivity can be rationalized on the basis of steric and electronic effects, revising a previously proposed hypothesis. (C) 1998 Elsevier Science S.A. All rights reserved. [References: 51]
机译:最近,人们对CO脱氢酶/乙酰辅酶A合酶A簇的结构和功能特征以及几种可以用作模型系统的合成复合物的结构和功能特性进行了研究(SW Ragsdale和CG Riordan,J. Biol Chem。,1(1996)489)。实验上已经证明所有这些系统都能够进行烷基转移反应,但是关于反应机理尚未达成普遍共识。这项研究的目的是通过Hartree-Fock(HF)方法对四氮杂大环镍配合物进行甲基连接反应的理论研究。为此,首先将Hartree-Fock计算方法与通过实验获得的结果进行比较,并使用其他理论方法进行了测试。一旦证明对于这类化合物,Hartree-Fock计算可以相当准确地产生结构和能量数据,则该研究将扩展到研究[Ni(cyclam)]配体的RRRR和RRSS构型异构体的可能的甲基连接途径。考虑到镍配合物的几何形状讨论了这些反应,这些配合物对应于最佳的从头算结构以及相关的反应能量以及电子和自旋分布。我们的理论结果表明:(i)对于NI(II)配合物而言,甲基转移反应非常不利;(ii)与实验观察结果相符的一些提议,最可能的甲基连接机制涉及甲基自由基转移;以及(iii) )相对于RRSS异构体,RRRR [Ni(cyclam)]异构体经历了放热的甲基连接反应。此外,可以根据空间效应和电子效应合理化反应性的这种差异,从而修改先前提出的假设。 (C)1998 Elsevier Science S.A.保留所有权利。 [参考:51]

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