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谷氨酸构象分析:使用隐式连续溶剂模型的密度泛函方法。

Conformational analysis of glutamic acid: a density functional approach using implicit continuum solvent model.

机构信息

Graduate School of Natural and Applied Sciences, Biochemistry Department, Ege University, 35100, Bornova, Izmir, Turkey.

出版信息

J Mol Model. 2014 Sep;20(9):2396. doi: 10.1007/s00894-014-2396-0. Epub 2014 Aug 19.

Abstract

Amino acids are constituents of proteins and enzymes which take part almost in all metabolic reactions. Glutamic acid, with an ability to form a negatively charged side chain, plays a major role in intra and intermolecular interactions of proteins, peptides, and enzymes. An exhaustive conformational analysis has been performed for all eight possible forms at B3LYP/cc-pVTZ level. All possible neutral, zwitterionic, protonated, and deprotonated forms of glutamic acid structures have been investigated in solution by using polarizable continuum model mimicking water as the solvent. Nine families based on the dihedral angles have been classified for eight glutamic acid forms. The electrostatic effects included in the solvent model usually stabilize the charged forms more. However, the stability of the zwitterionic form has been underestimated due to the lack of hydrogen bonding between the solute and solvent; therefore, it is observed that compact neutral glutamic acid structures are more stable in solution than they are in vacuum. Our calculations have shown that among all eight possible forms, some are not stable in solution and are immediately converted to other more stable forms. Comparison of isoelectronic glutamic acid forms indicated that one of the structures among possible zwitterionic and anionic forms may dominate over the other possible forms. Additional investigations using explicit solvent models are necessary to determine the stability of charged forms of glutamic acid in solution as our results clearly indicate that hydrogen bonding and its type have a major role in the structure and energy of conformers.

摘要

氨基酸是蛋白质和酶的组成部分,几乎参与所有代谢反应。谷氨酸具有形成带负电荷侧链的能力,在蛋白质、肽和酶的分子内和分子间相互作用中起着重要作用。在 B3LYP/cc-pVTZ 水平上对所有八种可能的形式进行了详尽的构象分析。在水溶液中,使用极化连续体模型模拟水作为溶剂,研究了谷氨酸结构的所有可能的中性、两性离子、质子化和去质子化形式。根据二面角将八种谷氨酸形式分为九组。溶剂模型中包含的静电效应通常更稳定带电形式。然而,由于溶质和溶剂之间缺乏氢键,两性离子形式的稳定性被低估了;因此,观察到在溶液中,与真空相比,紧凑的中性谷氨酸结构更稳定。我们的计算表明,在所有八种可能的形式中,有些在溶液中不稳定,会立即转化为其他更稳定的形式。等电子谷氨酸形式的比较表明,在可能的两性离子和阴离子形式中,有一种结构可能比其他可能的形式更占优势。需要使用显式溶剂模型进行进一步研究,以确定谷氨酸在溶液中的带电形式的稳定性,因为我们的结果清楚地表明氢键及其类型在构象的结构和能量中起着重要作用。

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