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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Theoretical Study on the Redox Cycle of Bovine Glutathione Peroxidase GPx1: pK_a Calculations, Docking, and Molecular Dynamics Simulations
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Theoretical Study on the Redox Cycle of Bovine Glutathione Peroxidase GPx1: pK_a Calculations, Docking, and Molecular Dynamics Simulations

机译:牛谷胱甘肽过氧化物酶GPx1氧化还原循环的理论研究:pK_a计算,对接和分子动力学模拟

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Three approaches of computational chemistry [quantum mechanics (QM) calculations, docking, and molecular dynamics (MD) simulations] were used to investigate the redox cycle of bovine erythrocyte glutathione peroxidase from class 1 (GPx1, EC 1.11.1.9). The pK_a calculations for two redox states of the active-site selenocysteine of GPx1 (selenol, Sec45-SeH, and selenenic acid, Sec45-SeOH) were estimated using a bulk solvent model (B3LYP-IEFPCM and B3LYP-CPCM-COSMO-RS). The calculated pK_a values of Sec45-SeH and Sec45-SeOH were corrected via a simple linear fit to a training set of organoselenium compounds, which consisted of aliphatic selenols and aromatic selenenic acids with available experimental pK_a values. Based on docking calculations, binding sites for both molecules of the cofactor glutathione (GSH) are described. MD simulations on the dimer of GPx1 have been performed for all chemical states of the redox cycle: without GSH and with one or two molecules of GSH bound at the active site. Conformational analyses of MD trajectories indicate high mobility of the Arg177 and His79 residues. These residues can approach the vicinity of Sec45 and take part in the catalytic mechanism. On the basis of the calculated data, new atomistic details for a generally accepted mechanism of GPx1 are proposed.
机译:三种计算化学方法[量子力学(QM)计算,对接和分子动力学(MD)模拟]用于研究1类牛红细胞谷胱甘肽过氧化物酶的氧化还原循环(GPx1,EC 1.11.1.9)。使用本体溶剂模型(B3LYP-IEFPCM和B3LYP-CPCM-COSMO-RS)估算了GPx1活性部位硒代半胱氨酸的两个氧化还原状态(硒醇,Sec45-SeH和硒酸,Sec45-SeOH)的pK_a计算。 Sec45-SeH和Sec45-SeOH的计算的pK_a值通过简单的线性拟合对有机硒化合物的训练集进行了校正,其中有机硒化合物由脂肪族硒醇和芳香族硒酸组成,具有可用的实验pK_a值。基于对接计算,描述了辅因子谷胱甘肽(GSH)的两个分子的结合位点。已针对氧化还原循环的所有化学状态在GPx1的二聚体上进行了MD模拟:没有GSH,并且在活性位点结合了一个或两个GSH分子。 MD轨迹的构象分析表明Arg177和His79残基的高迁移率。这些残基可以接近Sec45并参与催化机理。根据计算的数据,提出了GPx1普遍接受的机制的新原子细节。

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