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Development of a ReaxFF Reactive Force Field for Glycine and Application to Solvent Effect and Tautomerization

机译:甘氨酸的ReaxFF反应力场的开发及其在溶剂效应和互变异构中的应用

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摘要

Tautomerization of amino acids between the neutral form (NF) and the zwitterionic form (ZW) in water has been extensively studied, often using glycine as a model to understand this fundamental process. In spite of many advanced studies, the tautomerization reaction remains poorly understood because of the intrinsic complexities of the system, including multiple accessible reaction pathways, charge transfer, and variations of solvation structure. To establish an accurate model that can be used for molecular dynamics simulations, a ReaxFF reactive force field has been developed for glycine. A training set for the ReaxFF hydrocarbon potential was augmented with several glycine conformers and glycine−water complexes. The force field parameters were optimized to reproduce the quantum mechanically derived energies of the species in the training set. The optimized potential could accurately describe the properties of gas-phase glycine. It was applied to investigate the effect of solvation on the conformational distribution of glycine. Molecular dynamics simulations indicated significant differences in the dominant conformers in the gas phase and in water. This suggests that the tautomerization of glycine occurs through a conformational isomerization followed by the proton transfer event. The direct reaction mechanism of the NF → ZW proton transfer reaction in water, as well as mechanisms mediated by one or two water molecules, were investigated using molecular dynamics simulations. The results suggest that the proton transfer reaction is most likely mediated by a single water molecule. The ReaxFF potential developed in this work provides an accurate description of proton transfer in glycine and thus provides a useful methodology for simulating proton transfer reactions in organic molecules in the aqueous environment.
机译:已经广泛研究了水中的中性形式(NF)和两性离子形式(ZW)之间的氨基酸互变异构,经常使用甘氨酸作为模型来理解这一基本过程。尽管进行了许多高级研究,但由于系统的内在复杂性(包括多个可及的反应途径,电荷转移和溶剂化结构的变化),对互变异构反应的了解仍然很少。为了建立可用于分子动力学模拟的准确模型,已为甘氨酸开发了ReaxFF反作用力场。 ReaxFF碳氢化合物潜力的培训集增加了几种甘氨酸构象异构体和甘氨酸-水络合物。优化了力场参数,以在训练集中重现物种的量子力学导出的能量。优化的电位可以准确地描述气相甘氨酸的性质。它被用于研究溶剂化对甘氨酸构象分布的影响。分子动力学模拟表明,气相和水中主要构象异构体之间存在显着差异。这表明甘氨酸的互变异构通过构象异构化随后质子转移事件发生。使用分子动力学模拟研究了水中NF→ZW质子转移反应的直接反应机理,以及由一个或两个水分子介导的机理。结果表明质子转移反应最有可能由单个水分子介导。在这项工作中开发的ReaxFF潜力提供了对甘氨酸中质子转移的准确描述,因此提供了一种用于模拟水性环境中有机分子中质子转移反应的有用方法。

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