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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Density Functional Theory Calculation of Bonding and Charge Parameters for Molecular Dynamics Studies on [FeFe] Hydrogenases
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Density Functional Theory Calculation of Bonding and Charge Parameters for Molecular Dynamics Studies on [FeFe] Hydrogenases

机译:[FeFe]氢化酶分子动力学研究键和电荷参数的密度泛函理论计算

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摘要

We have developed and tested molecular mechanics parameters for [FeS] clusters found in known [FeFe] hydrogenases. Bond stretching, angle bending, dihedral and improper torsion parameters for models of the oxidized and reduced catalytic H-cluster, [4Fe4S]~(+,2+)Cys4, [4Fe4S]~(+,2+)Cys3His, and [2Fe2S]~(+,2+)Cys4, were calculated solely from Kohn-Sham density functional theory and Natural Population Analysis. Circumsphere analysis of the cubane clusters in the energy-minimized structure of the full Clostridium pasteurianum hydrogenase I showed the resulting metallocluster structures to be similar to known cubane structures. All clusters were additionally stable in molecular dynamics simulations over the course of 1.0 ns in the fully oxidized and fully reduced enzyme models. Normal modes calculated by quasiharmonic analysis from the dynamics data show unexpected couplings among internal coordinate motions, which may reflect the effects of the protein structure on metallocluster dynamics.
机译:我们已经开发并测试了在已知[FeFe]氢化酶中发现的[FeS]簇的分子力学参数。 [4Fe4S]〜(+,2+)Cys4,[4Fe4S]〜(+,2+)Cys3His和[2Fe2S]的模型]〜(+,2+)Cys4,仅根据Kohn-Sham密度泛函理论和自然种群分析计算。在完整的巴氏梭菌加氢酶I的能量最小化结构中,古巴群的周围环境分析表明,所得金属簇结构类似于已知的古巴结构。在完全氧化和完全还原的酶模型中,所有分子簇在分子动力学模拟中均在1.0 ns的时间内保持稳定。通过准谐波分析从动力学数据计算得出的正常模式显示出内部坐标运动之间的意外耦合,这可能反映了蛋白质结构对金属簇动力学的影响。

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