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L-甘氨酰缬氨酸和 L-甘氨酰甘氨酸内盐的水合:使用 DFT 方法的结构和振动研究。

Hydration of l-glycylvaline and l-glycylvalylglycine zwitterions: Structural and vibrational studies using DFT method.

机构信息

Faculté des Sciences, Université de Bangui, Bangui, Central African Republic; Faculté des Sciences de Tunis, Université de Tunis El Manar, Campus Universitaire, 1060, Tunis, Tunisia.

Faculté des Sciences de Tunis, Université de Tunis El Manar, Campus Universitaire, 1060, Tunis, Tunisia.

出版信息

J Mol Graph Model. 2019 May;88:194-202. doi: 10.1016/j.jmgm.2019.01.012. Epub 2019 Jan 26.

DOI:10.1016/j.jmgm.2019.01.012
PMID:30711801
Abstract

Solvent effects on the structural and vibrational features of l-glycylvaline (L-GV) and l-glycylvalylglycine (L-GVG) in zwitterionic forms have been performed by means of DFT method. Relaxed potential energy surface scans (RPES) performed at B3LYP/6-31++G(d) level were used to map the reaction coordinate surfaces and to identify the geometries corresponding to the minima energy. Explicit solvation model, where L-GV and L-GVG are respectively surrounded by 9 and 11 water molecules interacting with H-donor and H-acceptor sites, as well as the different hybrid solvation models of solvation (explicit/COSMO, explicit/PCM and explicit/CPCM) allowed to analyze the hydration effects. Those number of water molecules are sufficient to fully hydrate carboxyl(COO), amine (NH) and amide (NH, C=O) groups. Harmonic vibrational modes calculated after geometry optimization on each solvated complex are performed at B3LYP/6-31++g(d) and PBE0/6-31++g(d) methods and a post-processing treatment enable us to assign the vibrational modes of LGV and L-GVG. The frequencies of the assigned modes obtained using B3LYP in explicit/COSMO are in good agreement with available IR and Raman values than those found in both explicit/PCM and explicit/CPCM which proved to be very close.

摘要

通过 DFT 方法研究了在两性离子形式下 L-甘氨酰缬氨酸(L-GV)和 L-甘氨酰缬氨酰甘氨酸(L-GVG)的溶剂效应对其结构和振动特征的影响。在 B3LYP/6-31++G(d)水平上进行了松弛势能表面扫描(RPES),以绘制反应坐标表面并确定对应于最小能量的几何形状。采用显式溶剂化模型,其中 L-GV 和 L-GVG 分别被 9 和 11 个水分子包围,并与 H-供体和 H-受体位点相互作用,以及不同的混合溶剂化模型(显式/COSMO、显式/PCM 和显式/CPCM)用于分析水合作用的影响。这些水分子的数量足以完全水合羧基(COO)、胺(NH)和酰胺(NH、C=O)基团。在每个溶剂化复合物的几何优化后计算出的简谐振动模式在 B3LYP/6-31++g(d)和 PBE0/6-31++g(d)方法上进行,并进行后处理处理,使我们能够对 LGV 和 L-GVG 的振动模式进行分配。在显式/COSMO 中使用 B3LYP 获得的分配模式的频率与可用的 IR 和 Raman 值非常吻合,而在显式/PCM 和显式/CPCM 中发现的频率则非常接近。

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