拮抗化合物艾氯胺酮的分子模拟及其与非竞争性n-甲基- d -天冬氨酸(NMDA)受体NR1、NR2A、NR2B和NR2D的分子对接研究

M. Nabati, Vida Bodaghi-Namileh, S. Sarshar
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引用次数: 8

摘要

本文的主要目的是研究拮抗化合物艾氯胺酮的反应性和稳定性,并分析其与n-甲基- d -天冬氨酸受体非竞争性亚基NR1、NR2A、NR2B和NR2D的结合。首先,采用密度泛函理论(DFT)方法在B3YP/6-311++G(d,p)理论水平上对艾氯胺酮的分子结构进行优化。采用全局反应性指标对该药物的反应性和稳定性进行了研究。计算数据表明,该分子稳定,与受体和蛋白质等生物分子残基相互作用的倾向较低。其次,利用molegro虚拟docker (MVD)程序分析了分子与受体的结合。我们的计算表明,该化合物主要通过与NR2B受体的相互作用来发挥其药理作用,而含有Gly [A] 128、His [A] 127、Gly [A] 264、Tyr [A] 282、Ser [A] 131、Asp [A] 265、Ser [A] 260和Met [A] 132的NR2B残基是参与配体-受体复合物形成的主要氨基酸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular Modeling of the antagonist compound esketamine and its molecular docking study with non-competitive N-methyl-D-aspartate (NMDA) receptors NR1, NR2A, NR2B and NR2D
The main purpose of the present article is reactivity and stability properties study of the antagonist compound esketamine and analyzing of its binding to the non-competitive N-methyl-D-aspartate receptor subunits (NR1, NR2A, NR2B and NR2D). In first step, the molecular structure of esketamine was optimized using density functional theory (DFT) method at B3YP/6-311++G(d,p) level of theory. The reactivity and stability properties of the title medicinal compound were studied by global reactivity indices. The computational data showed the molecule is stable and has low tendency to interact with residues of the biomolecules like receptors and proteins. Secondly, the molecule binding to the receptors were analyzed by molegro virtual docker (MVD) program. Our computations indicated that the compound asserts its pharmacological effects mainly through interactions with NR2B receptors and the NR2B residues containing Gly [A] 128, His [A] 127, Gly [A] 264, Tyr [A] 282, Ser [A] 131, Asp [A] 265, Ser [A] 260 and Met [A] 132 are the main amino acids involved in the ligand-receptor complex formation.
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