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乙酰辅酶A合成酶反应机制的量子化学研究

A quantum chemical study of the reaction mechanism of acetyl-coenzyme a synthase.

作者信息

Amara Patricia, Volbeda Anne, Fontecilla-Camps Juan Carlos, Field Martin J

机构信息

Laboratoire de Dynamique Moléculaire and Laboratoire de Cristallographie et Cristallogenèse des Protéines, Institut de Biologie Structurale - Jean-Pierre Ebel, CEA/CNRS/UJF, 41, rue Jules Horowitz, F-38027 Grenoble Cedex 01, France.

出版信息

J Am Chem Soc. 2005 Mar 2;127(8):2776-84. doi: 10.1021/ja0439221.

Abstract

Recent experimental and theoretical studies have focused on the mechanism of the A-cluster active site of acetyl-CoA synthase that produces acetyl-CoA from a methyl group, carbon monoxide, and CoA. Several proposals have been made concerning the redox states of the (Ni-Ni) bimetallic center and the iron-sulfur cluster connected to one of the metals. Using hybrid density functional theory, we have investigated putative intermediate states from the catalytic cycle. Among our conclusions are the following: (i) the zerovalent state proposed for the proximal metal is unlikely if the charge on the iron-sulfur cluster is +2; (ii) a mononuclear mechanism in which both CO and CH(3) bind the proximal nickel is favored over the binuclear mechanism in which CO and CH(3) bind the proximal and distal nickel ions, respectively; (iii) the formation of a disulfide bond in the active site could provide the two electrons necessary for the reaction but only if methylation occurs simultaneously; and (iv) the crystallographic closed form of the active site needs to open to accommodate ligands in the equatorial site.

摘要

近期的实验和理论研究聚焦于乙酰辅酶A合酶A簇活性位点从甲基、一氧化碳和辅酶A生成乙酰辅酶A的机制。关于(镍-镍)双金属中心以及与其中一种金属相连的铁硫簇的氧化还原状态,已经提出了几种观点。利用杂化密度泛函理论,我们研究了催化循环中的假定中间态。我们的结论如下:(i)如果铁硫簇上的电荷为+2,那么为近端金属提出的零价态不太可能;(ii)与一氧化碳和甲基分别与近端和远端镍离子结合的双核机制相比,一氧化碳和甲基都与近端镍结合的单核机制更受青睐;(iii)活性位点中二硫键的形成可以为反应提供所需的两个电子,但前提是甲基化同时发生;(iv)活性位点的晶体学封闭形式需要打开以容纳赤道位点的配体。

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