Faculty of Medicine and Health Sciences, Crewe Campus, University of Buckingham, Crewe, CW1 5DU, UK.
J Biol Inorg Chem. 2021 Aug;26(5):617-624. doi: 10.1007/s00775-021-01878-4. Epub 2021 Jul 13.
The enzyme carbon monoxide dehydrogenase is capable of efficiently converting [Formula: see text] to CO and, therefore, can enable an affordable [Formula: see text] recycling strategy. The reduction of [Formula: see text] occurs at a peculiar nickel-iron-sulfur cluster, following a mechanism that remains little understood. In this study, we have used ab initio molecular dynamics simulations to explore the free energy landscape of the reaction. We predict the existence of a COOH ligand that strongly interacts with the surrounding protein residues and favours a mechanism where a [Formula: see text] molecule is eliminated before CO. We have taken advantages of the insights offered by our simulations to revisit the catalytic mechanism and the role of the residues surrounding the active centre in particular, thus assisting in the design of inorganic catalysts that mimic the enzyme.
一氧化碳脱氢酶能够有效地将[化学式:见正文]转化为 CO,因此可以实现一种经济实惠的[化学式:见正文]回收策略。[化学式:见正文]的还原发生在一个特殊的镍铁硫簇上,其反应机制仍不太清楚。在这项研究中,我们使用从头算分子动力学模拟来探索反应的自由能景观。我们预测存在一个 COOH 配体,它与周围的蛋白质残基强烈相互作用,并有利于一种机制,即 CO 之前先消除一个[化学式:见正文]分子。我们利用模拟提供的见解来重新审视催化机制和活性中心周围残基的作用,从而有助于设计模仿酶的无机催化剂。
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