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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Modeling the active sites in metalloenzymes 5. The heterolytic bond cleavage of H-2 in the [NiFe] hydrogenase of Desulfovibrio gigas by a nucleophilic addition mechanism
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Modeling the active sites in metalloenzymes 5. The heterolytic bond cleavage of H-2 in the [NiFe] hydrogenase of Desulfovibrio gigas by a nucleophilic addition mechanism

机译:模拟金属酶中的活性位点5.通过亲核加成机理对脱硫弧菌[NiFe]氢化酶中H-2的杂合键裂解

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摘要

The H-2 activation catalyzed by an Fe(II)-Ni(III) model of the [NiFe] hydrogenase of Desulfovibrio gigas has been investigated by density functional theory (DFT/B3LYP) calculations on the neutral and anionic active site complexes, [(CO)(CN)(2)Fe(mu -SH)(2)Ni(SH)(SH2)](0) and [(CO)(CN)(2)Fe(mu -SH)(2)Ni(SH)(2)](-). The results suggest that the reaction proceeds by a nucleophilic addition mechanism that cleaves the H-H bond heterolytically. The terminal cysteine residue Cys530 in the [NiFe] hydrogenase active site of the D. gigas enzyme plays a crucial role in the catalytic process by accepting the proton. The active site is constructed to provide access by this cysteine residue, and this role explains the change in activity observed when this cysteine is replaced by a selenocysteine. Furthermore, the optimized geometry of the transition state in the model bears a striking resemblance to the geometry of the active site as determined by X-ray crystallography. [References: 57]
机译:已通过密度泛函理论(DFT / B3LYP)计算研究了中性和阴离子活性位点配合物,研究了Desulfovibrio gigas的[NiFe]氢化酶的Fe(II)-Ni(III)模型催化的H-2活化。 (CO)(CN)(2)Fe(mu -SH)(2)Ni(SH)(SH2)](0)和[(CO)(CN)(2)Fe(mu -SH)(2)Ni (SH)(2)](-)。结果表明反应是通过亲核加成机理进行的,该亲核加成机理杂合地裂解H-H键。巨球藻酶[NiFe]氢化酶活性位点的半胱氨酸末端半胱氨酸Cys530在接受质子的催化过程中起着至关重要的作用。构建活性位点以提供该半胱氨酸残基的进入,并且该作用解释了当该半胱氨酸被硒代半胱氨酸替代时观察到的活性变化。此外,模型中过渡态的优化几何形状与X射线晶体学确定的活性位点的几何形状极为相似。 [参考:57]

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