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A Grid Computing-Based Monte Carlo Docking Simulations Approach for Computational Chiral Discrimination

机译:基于网格计算的蒙特卡罗对接模拟方法,用于计算手性歧视

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A validity of Grid computing with Monte Carlo (MC) docking simulations was examined in order to execute prediction and data handling for the computational chiral discrimination. Docking simulations were performed with various computational parameters for the chiral discrimination of a series of 17 enantiomers by β-cyclodextrin (β-CD) or by 6-amino-6-deoxy-β-cyclodextrin (am-β-CD). Rigid-body MC docking simulations gave more accurate predictions than flexible docking simulations. The accuracy was also affected by both the simulation temperature and the kind of foree field. The prediction rate of chiral preference was improved by as much as 76.7% when rigid-body MC docking simulations were performed at low temperatures (100 K) with a sugar22 parameter set in the CHARMM force field. Our approach for Grid-based MC docking simulations suggested the conformational rigidity of both the host and guest molecule.
机译:检查了用蒙特卡罗(MC)对接模拟的网格计算的有效性,以便执行计算手续歧视的预测和数据处理。通过β-环糊精(β-CD)或通过6-氨基-6-脱氧-β-环糊精(AM-β-CD)对β-环糊精(β-CD)或6-氨基-6-脱氧-β-环糊精(AM-β-CD)进行对接鉴别的各种计算参数进行对接模拟。刚体MC对接模拟比灵活的对接模拟更准确的预测。精度也受模拟温度和额外场的影响。当在低温(100k)中在脉冲力场中的糖22参数中进行刚性 - 体MC对接模拟时,通过在低温(100k)处进行刚性 - 体MC对接模拟,提高了手性偏好的预测率。我们对基于网格的MC对接模拟的方法表明了宿主和访客分子的构象刚性。

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