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Quantum Chemical Modelling of the Oxidation of Myoglobin

机译:肌红蛋白氧化的量子化学建模

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The electronic structure(charge distribution,bond indices)and the geometry(bond distances and angles)of the deoxyheme and the oxyheme with coordinated proximal histidine in their reduced and oxidized form were determined by the INDO method.The effect of the distal histidine(in the case of the oxyheme)and a water molecule(in the case of the metheme)on the geometry,charge distribution and stability of the systems was investigated.The method was adopted to model the oxidation of myoglobin in biological systems.The results revealed that both deoxy-and oxymyoglobin could spontaneously undergo one-electron oxidation.The mechanistic considerations based on the charge distribution and energetic effects led to the conclusion,that in oxymyoglobin's case the electron transfer are followed by dissociation of a dioxygen molecule and addition of a water molecule,where both processes proceed in parallel.
机译:用INDO方法测定了具有还原和氧化形式的近端组氨酸配位的氧合血红素和氧合血红素的电子结构(电荷分布,键指数)以及几何形状(键合距离和角度)。考察了氧合血红素的情况和水分子的情况(在mememe的情况下)对系统的几何结构,电荷分布和稳定性的影响,并采用该方法对生物系统中肌红蛋白的氧化进行了建模,结果表明:氧肌红蛋白和氧肌红蛋白都可以自发地发生单电子氧化。基于电荷分布和高能效应的机理考虑得出结论,在氧肌红蛋白的情况下,电子转移后是双氧分子解离并加水分子,这两个过程并行进行。

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