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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Mechanisms of the S/CO/Se interchange reactions at FeMo-co, the active site cluster of nitrogenase
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Mechanisms of the S/CO/Se interchange reactions at FeMo-co, the active site cluster of nitrogenase

机译:固氮酶活性位点簇FeMo-co的S / CO / Se交换反应机理

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摘要

The active site of the N-2 fixing enzyme nitrogenase is a C-centred Fe7MoS cluster (FeMo-co) containing a trigonal prism of six Fe atoms connected by a central belt of three doubly-bridging S atoms. The trigonal faces of the prism are capped via triply-bridging S atoms to Fe1 at one end and Mo at the other end. One of the central belt atoms, S2B, considered to be important in the chemical mechanism of the enzyme, has been shown by Spatzal, Rees et al. to undergo substitution by CO, and also substitution by Se in the presence of SeCN-, under turnover conditions. Further, when turning over under C2H2 or N-2/CO there is migration of Se to the other two belt bridging positions. These reactions are extraordinary, and unprecedented in metal chalcogenide cluster chemistry. Using density functional simulations, mechanisms for all of these reactions have been developed, involving the small molecules SCO, SeCO, C2H2S, C2H2Se, SeCN-, SCN- functioning as carriers of S and Se atoms. The possibility that the S2B bridge position is vacant is discounted, because the barrier to formation of a bridge-void intermediate with two contiguous three-coordinate Fe atoms is too large. A bridging ligand is retained throughout the proposed mechanisms. Intermediates with Fe-C(O)-S/Se-Fe cycles and with SCO/SeCO C-bound to Fe are predicted. The energetics of the reaction trajectories show them to be feasible and easily reversible, consistent with experiment. Alternative mechanisms involving intramolecular differential rotatory rearrangements of the cluster to scramble the Se bridges are also examined, and shown to be very unlikely. The implications of these new facets of the reactivity of the FeMo-co cluster are discussed: it is considered that they are unlikely to be part of the mechanism of the physiological reactions of nitrogenase.
机译:N-2固定酶固氮酶的活性位点是一个以C为中心的Fe7MoS簇(FeMo-co),其中包含六个Fe原子的三棱柱,并由三个双桥S原子的中心带连接。棱镜的三角面通过三桥联的S原子在一端封端为Fe1,在另一端封端为Mo。 Spatzal,Rees等人已经表明,中心带原子之一S2B在酶的化学机理中很重要。在周转条件下,经CO取代,在SeCN-存在下被Se取代。此外,当在C2H2或N-2 / CO下翻转时,Se迁移到另外两个皮带桥接位置。这些反应是异常的,并且在金属硫族化物簇化学中是前所未有的。使用密度泛函模拟,已经开发了所有这些反应的机制,涉及小分子SCO,SeCO,C2H2S,C2H2Se,SeCN-,SCN-充当S和Se原子的载体。 S2B桥位置为空的可能性被降低,因为形成具有两个连续的三坐标Fe原子的桥空中间体的壁垒太大。在整个提出的机制中都保留了桥联配体。可以预测具有Fe-C(O)-S / Se-Fe循环和SCO / SeCO C结合到Fe的中间体。反应轨迹的能量学表明它们是可行的,并且易于逆转,与实验一致。还研究了涉及簇的分子内差异旋转重排以扰乱Se桥的替代机制,并且显示为极不可能的。讨论了这些新方面对FeMo-co团簇反应性的影响:认为它们不太可能成为固氮酶生理反应机制的一部分。

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