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首页> 外文期刊>Journal of the Chemical Society. Perkin Transactions 2 >Possible interaction mechanism for quaternary ammonium (QA) ions binding to potassium channels: density functional theory and MP2 studies on the interaction between phenol and ammonium cation
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Possible interaction mechanism for quaternary ammonium (QA) ions binding to potassium channels: density functional theory and MP2 studies on the interaction between phenol and ammonium cation

机译:季铵离子与钾通道结合的可能相互作用机理:密度泛函理论和酚和铵阳离子相互作用的MP2研究

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摘要

Tetraethylammonium (TEA) and other quaternary ammonium (QA) ions are potent blockers of potassium channels. In order to shed light on the blockade mechanism of QA ions, we have carried out a series of computations on the phenol-ammonium model with density functional theory (DFT) and Moller-Plesset second order perturbation (MP2) methods at levels of 6-31G~* and 6-31G~(**) basis sets. NH-aromatic #pi# interaction and NH-OH hydrogen bond interaction, which are important in biological systems, are responsible for the binding of NH_4~+ to phenol. From analysis of structures, energies, charge populations and transition state features, both the cation-#pi# interaction and hydrogen bond or electrostatic interaction between QAs and the key amino acid residues at the entryways of K~+ channels are seen to be significant in the blockade mechanism of QA ions.
机译:四乙铵(TEA)和其他季铵(QA)离子是钾通道的有效阻断剂。为了阐明QA离子的阻断机理,我们使用密度泛函理论(DFT)和Moller-Plesset二阶摄动(MP2)方法对苯酚-铵模型进行了一系列的6级计算。 31G〜*和6-31G〜(**)基集。在生物系统中很重要的NH-芳香族#pi#相互作用和NH-OH氢键相互作用是NH_4〜+与苯酚结合的原因。从结构,能量,电荷总数和过渡态特征分析,可以看出,QA与K〜+通道入口处关键氨基酸残基之间的阳离子-πpi#相互作用和氢键或静电相互作用均很重要。 QA离子的阻断机制。

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