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A Model Study on the Possible Effects of an External Electrical Field on Enzymes Having Dinuclear Iron Cluster [2Fe-2S]

机译:外部电场对具有二核铁簇的酶的可能影响的模型研究[2FE-2S]

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Hydrogenases which catalyze the H2↔ 2H++ 2e−reaction are metalloenzymes that can be divided into two classes, the NiFe and Fe enzymes, on the basis of their metal content. Iron-sulfur clusters [2Fe-2S] and [4Fe-4S] are common in ironhydrogenases. In the present model study, [2Fe-2S] cluster has been considered to visualize the effect of external electric field on various quantum chemical properties of it. In the model, all the cysteinyl residues are in the amide form. The PM3 type semiempirical calculations have been performed for the geometry optimization of the model structure in the absence and presence of the external field. Then, single point DFT calculations (B3LYP/6-31+G(d)) have been carried out. Depending on the direction of the field, the chemical reactivity of the model enzyme varies which suggests that an external electric field could, under proper conditions, improve the enzymatic hydrogen production.
机译:催化H21H ++ 2E反应的氢酶是金属酶,其可根据金属含量分为两类,NIFE和Fe酶。铁硫簇[2FE-2S]和[4FE-4S]在硫代氢酶中常见。在本模型研究中,已经考虑了[2FE-2S]群集以可视化外部电场对其各种量子化学性质的影响。在该模型中,所有半胱氨酸残基均为酰胺形式。已经在缺乏和存在外场的情况下对模型结构的几何优化进行了PM3型半透镜计算。然后,已经进行了单点DFT计算(B3LYP / 6-31 + G(D))。根据该领域的方向,模型酶的化学反应性变化,这表明外部电场可以在适当的条件下改善酶促产生。

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