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首页> 外文期刊>Journal of the American Chemical Society >MOLECULAR DYNAMICS POTENTIAL OF MEAN FORCE CALCULATIONS - A STUDY OF THE TOLUENE-AMMONIUM PI-CATION INTERACTIONS
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MOLECULAR DYNAMICS POTENTIAL OF MEAN FORCE CALCULATIONS - A STUDY OF THE TOLUENE-AMMONIUM PI-CATION INTERACTIONS

机译:力计算的分子动力学潜能-甲苯-铵离子化相互作用的研究

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摘要

We have examined the interaction between the ammonium cation and the aromatic face of toluene in water, by means of potential of mean force (PMF) calculations. Considering that (i) typical two-body additive molecular mechanical models cannot represent the energetics of pi-cation interactions accurately and (ii) employing nonadditive force fields increases the computational effort significantly, we have incorporated a short-range ''10-12'' term in our potential function, ensuring that the magnitude of the attraction between ammonium and toluene reproduces the value estimated from high-level quantum mechanical calculations. Interestingly, the PMF curve generated in water clearly demonstrates that association is favorable in a polar aqueous medium, with a minimum of the free energy equal to ca. 3 kcal/mol, and an association constant of 6.5 M(-1)-consistent with experimental data on related pi-cation systems. This association appears to be even stronger when the approach of ammonium toward the toluene ring is axially constrained, hence indicating that, in addition to non-negligible entropic effects, the magnitude and the directionality of ammonium-aromatic interactions might be intimately related. A comparison of the free energy profiles obtained in a vacuum and in water suggests that ''contact'' configurations should be stabilized in nonpolar environments. This observation concurs with the analysis of Phe-Lys interactions in several protein crystal structures.
机译:我们已通过势均值(PMF)计算方法研究了铵阳离子与水中甲苯的芳族表面之间的相互作用。考虑到(i)典型的两体加性分子力学模型不能准确地表示π-阳离子相互作用的能量学,并且(ii)采用非加性力场会大大增加计算量,因此我们将短距离的“ 10-12”并入是指我们的势能函数,以确保铵和甲苯之间的吸引力大小再现由高级量子力学计算得出的值。有趣的是,水中产生的PMF曲线清楚地表明,在极性水介质中缔合是有利的,其自由能的最小值等于ca。 3 kcal / mol,以及6.5 M(-1)的缔合常数与相关pi-阳离子系统的实验数据一致。当铵朝向甲苯环的方向受到轴向限制时,这种结合似乎会更强,因此表明,除了不可忽略的熵效应之外,铵-芳族相互作用的强度和方向性可能密切相关。对在真空和水中获得的自由能分布的比较表明,“接触”构造应在非极性环境中保持稳定。该观察结果与几种蛋白质晶体结构中Phe-Lys相互作用的分析一致。

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