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首页> 外文期刊>Bulletin of the Korean Chemical Society >An Amber Force Field for S-Nitrosoethanethiol That Is Transferable to S-Nitrosocysteine
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An Amber Force Field for S-Nitrosoethanethiol That Is Transferable to S-Nitrosocysteine

机译:可转移至S-亚硝基半胱氨酸的S-亚硝基乙硫醇的琥珀色力场

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摘要

Protein S-nitrosation is common in cells under nitrosative stress. In order to model proteins with S-nitrosocysteine (CysSNO) residues, we first developed an Amber force field for S-nitrosoethanethiol (EtSNO) and then transferred it to CysSNO. Partial atomic charges for EtSNO and CysSNO were obtained by a restrained electrostatic potential approach to be compatible with the Amber-99 force field. The force field parameters for bonds and angles in EtSNO were obtained from a generalized Amber force field (GAFF) by running the Antechamber module of the Amber software package. The GAFF parameters for the CC-SN and CS-NO dihedrals were not accurate and thus determined anew. The CC-SN and CS-NO torsional energy profiles of EtSNO were calculated quantum mechanically at the level of B3LYP/cc-pVTZ//HF/6-31G*. Torsional force constants were obtained by fitting the theoretical torsional energies with those obtained from molecular mechanics energy minimization. These parameters for EtSNO reproduced, to a reasonable accuracy, the corresponding torsional energy profiles of the capped tripeptide ACE-CysSNO-NME as well as their structures obtained from quantum mechanical geometry optimization. A molecular dynamics simulation of myoglobin with a CysSNO residue produced a well-behaved trajectory demonstrating that the parameters may be used in modeling other S-nitrosated proteins.
机译:蛋白亚硝化在亚硝化胁迫下在细胞中很常见。为了模拟具有S-亚硝基半胱氨酸(CysSNO)残基的蛋白质,我们首先开发了S-亚硝基乙硫醇(EtSNO)的琥珀色力场,然后将其转移至CysSNO。 EtSNO和CysSNO的部分原子电荷是通过约束静电势方法获得的,以与Amber-99力场兼容。通过运行Amber软件包的Antechamber模块,可以从广义的Amber力场(GAFF)获得EtSNO中键和角的力场参数。 CC-SN和CS-NO二面体的GAFF参数不准确,因此需要重新确定。 EtSNO的CC-SN和CS-NO扭转能谱是在B3LYP / cc-pVTZ // HF / 6-31G *的水平上量子力学计算的。扭转力常数是通过将理论扭转能量与分子力学能量最小化获得的能量进行拟合而获得的。 EtSNO的这些参数以合理的精度复制了封端的三肽ACE-CysSNO-NME的相应扭转能谱,以及通过量子力学几何优化获得的结构。带有CysSNO残基的肌红蛋白的分子动力学模拟产生了行为良好的轨迹,表明该参数可用于建模其他S-亚硝化蛋白。

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