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[堆积相互作用在NMDA受体甘氨酸位点与拮抗剂及3-羟基犬尿氨酸结合机制中的作用]

[The role of stacking interactions in the mechanisms of binding of the glycine site of NMDA-receptor with antagonists and 3-hydroxykynurenine].

作者信息

Zakharov G A, Popov A V, Savvateeva-Popova E V, Shchegolev B F

出版信息

Biofizika. 2008 Jan-Feb;53(1):22-9.

Abstract

Ab initio quantum chemical calculations of benzene dimer, benzene dimer with 5,7 clorination of one aromatic ring, 3-hydroxykynurenine, and kunurenic acid molecules situated above Phe484 aromatic ring of receptor binding site fragment were carried out in order to investigate the role of stacking interaction in the binding of agonists and antagonists with the glycine site of the NMDA receptor NR1 subunit. All calculations were done with the help of GAMESS 6.4 software with 6-31G** atomic gaussian basal functions with complete optimization of geometry and taking into account the electron correlation up to the second-order Moller-Plesset perturbation theory. It was shown that the parallel dislodged conformations of the benzene dimer is energetically most advantageous. Successive substitution of chlorine atoms for the protons of one aromatic ring in 7 and 5 positions leads to an increase in stacking-interaction energy and a mutual displacement of aromatic rings. In the case of kunurenic acid and its derivatives, which are NMDA receptor antagonists, the increase in the energy of stacking interactions leads to the strengthening of inhibition of the ion channel, whereas the 3-hydroxykynurenine molecule is neither agonist, nor antagonist for the glycine site of the NMDA receptor due to the sterical constraints.

摘要

为了研究堆积相互作用在激动剂和拮抗剂与NMDA受体NR1亚基甘氨酸位点结合中的作用,对位于受体结合位点片段的Phe484芳香环上方的苯二聚体、一个芳香环具有5,7-氯化的苯二聚体、3-羟基犬尿氨酸和犬尿酸分子进行了从头算量子化学计算。所有计算均借助GAMESS 6.4软件,采用6-31G**原子高斯基函数,对几何结构进行完全优化,并考虑了直至二阶Moller-Plesset微扰理论的电子相关。结果表明,苯二聚体的平行错位构象在能量上最为有利。在7位和5位用氯原子依次取代一个芳香环上的质子会导致堆积相互作用能增加以及芳香环相互位移。对于作为NMDA受体拮抗剂的犬尿酸及其衍生物,堆积相互作用能的增加导致离子通道抑制作用增强,而由于空间位阻,3-羟基犬尿氨酸分子对NMDA受体的甘氨酸位点既不是激动剂也不是拮抗剂。

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