首页> 外文期刊>Bulletin of the Korean Chemical Society >Calculation of the Absolute Rate of Human Cu/Zn Superoxide Dismutases from Atomic-Level Molecular Dynamics Simulations
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Calculation of the Absolute Rate of Human Cu/Zn Superoxide Dismutases from Atomic-Level Molecular Dynamics Simulations

机译:从原子级分子动力学模拟计算人类铜锌超氧化物歧化酶的绝对速率

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Based on the recently derived general expression for the rates of diffusion-controlled reactions, we calculate the rates of dismutation of the superoxide anion radical catalyzed by Cu/Zn superoxide dismutases (SOD). This is the first attempt to calculate the absolute rates of diffusion-controlled enzyme reactions based on the atomiclevel molecular dynamics simulations. All solvent molecules are included explicitly and the effects of the structural flexibility of enzyme, especially those of side chain motions near the active site, are included in the present calculation. In addition, the actual mobility of the substrate molecule is taken into account, which may change as the molecule approaches the active site of enzyme from the bulk solution. The absolute value of the rate constant for the wild type SOD reaction obtained from MD simulation is shown to be in good agreement with the experimental value. The calculated reactivity of a mutant SOD is also in agreement with the experimental result.
机译:基于最近得出的扩散控制反应速率的一般表达式,我们计算了由铜/锌超氧化物歧化酶(SOD)催化的超氧化物阴离子自由基的歧化速率。这是基于原子级分子动力学模拟计算扩散控制的酶反应的绝对速率的首次尝试。明确包括所有溶剂分子,并且本计算中包括酶的结构柔韧性的影响,特别是活性位点附近的侧链运动的影响。另外,考虑了底物分子的实际迁移率,其可能随着分子从本体溶液接近酶的活性位点而改变。从MD模拟获得的野生型SOD反应的速率常数的绝对值显示出与实验值良好吻合。突变的SOD的计算的反应性也与实验结果一致。

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