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水合二肽的极化分子动力学模拟。

Polarizable molecular dynamics simulations of aqueous dipeptides.

机构信息

Department of Chemistry, Clemson University, Clemson, South Carolina 29634, USA.

出版信息

J Phys Chem B. 2012 Aug 2;116(30):8733-40. doi: 10.1021/jp300528m. Epub 2012 Jul 17.

Abstract

Molecular dynamics simulations were carried out for concentrated aqueous solutions of three dipeptides: Gly-Ala, Gly-Pro, and Ala-Pro. The simulations were performed using both polarizable and nonpolarizable force fields, as a method of assessing the effects of polarization in a well-characterized biomolecular system, and to determine whether the models are adequate to reproduce observed aggregation behavior. The structure and dynamics of both solute and solvent were analyzed and the results compared to experiment, including neutron diffraction measurements of peptide aggregation. The polarizable water is depolarized in concentrated peptide solutions, reflecting its ability to adapt to heterogeneous electrostatic environments. Significant differences between the polarizable and nonpolarizable models are found in terms of both the structure and the dynamics of water as a solvent. Although the water shows more realistic structure and dynamics in the polarizable simulations, consistent with enhanced peptide-water interaction, the peptide aggregation behavior agrees less well with the experiment. Neither model successfully reproduces the experimentally observed dipeptide aggregation behavior.

摘要

进行了三种二肽(甘氨酰-丙氨酸、甘氨酰-脯氨酸和丙氨酰-脯氨酸)浓水溶液的分子动力学模拟。使用极化和非极化力场进行了模拟,作为在一个特征明确的生物分子系统中评估极化影响的方法,并确定这些模型是否足以重现观察到的聚集行为。分析了溶质和溶剂的结构和动力学,并将结果与实验进行了比较,包括肽聚集的中子衍射测量。在浓肽溶液中,极化水去极化,反映了它适应非均匀静电环境的能力。在水作为溶剂的结构和动力学方面,极化和非极化模型之间存在显著差异。尽管极化模拟中水显示出更真实的结构和动力学,与增强的肽-水相互作用一致,但肽聚集行为与实验结果不太一致。两种模型都不能成功地再现实验观察到的二肽聚集行为。

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