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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Protonation-induced stereoisomerism in nicotine: Conformational studies using classical (AMBER) and ab initio (Car-Parrinello) molecular dynamics
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Protonation-induced stereoisomerism in nicotine: Conformational studies using classical (AMBER) and ab initio (Car-Parrinello) molecular dynamics

机译:尼古丁中质子化诱导的立体异构:使用经典(AMBER)和从头算(Car-Parrinello)分子动力学的构象研究

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摘要

A variety of biologically active small molecules contain prochiral tertiary amines, which become chiral centers upon protonation. S-nicotine, the prototypical nicotinic acetylcholine receptor agonist, produces two diastereomers on protonation. Results, using both classical (AMBER) and ab initio (Car-Parrinello) molecular dynamical studies, illustrate the significant differences in conformational space explored by each diastereomer. As is expected, this phenomenon has an appreciable effect on nicotines energy hypersurface and leads to differentiation in molecular shape and divergent sampling. Thus, protonation induced isomerism can produce dynamic effects that may influence the behavior of a molecule in its interaction with a target protein. We also examine differences in the conformational dynamics for each diastereomer as quantified by both molecular dynamics methods.
机译:多种具有生物活性的小分子包含手性叔胺,它们在质子化时变成手性中心。原型烟碱样乙酰胆碱受体激动剂S-尼古丁在质子化时产生两个非对映异构体。使用经典分子(AMBER)和从头算分子(Car-Parrinello)进行分子动力学研究的结果表明,每种非对映异构体在构象空间中存在显着差异。不出所料,这种现象对尼古丁能量超表面有明显影响,并导致分子形状的差异和取样的差异。因此,质子化诱导的异构现象可产生动力学效应,该动力学效应可影响分子在与靶蛋白相互作用中的行为。我们还检查了通过两种分子动力学方法量化的每个非对映异构体构象动力学的差异。

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