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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >vanderWaals host-guest complexes: Can one predict complexation selectivity of neutral guests by a cryptophane? MD-FEP studies in gas phase and chloroform solution
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vanderWaals host-guest complexes: Can one predict complexation selectivity of neutral guests by a cryptophane? MD-FEP studies in gas phase and chloroform solution

机译:vanderWaals宿主-客体复合物:能否预测一位隐喻对中性客体的复合物选择性?气相和氯仿溶液中的MD-FEP研究

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Quantitative assessment of the "best fit" between neutral molecules and the cavity of a "rigid" neutral receptor is a challenging task in supramolecular chemistry, drug design, and biology. We investigate this question by molecular dynamics and free-energy perturbation simulations performed on the macrocyclic ligand cryptophane-E (L) and its L.S complexes with three tetrahedral guests (S = CH2Cl2, CHCl3, and CCl4) in the gas phase and in chloroform solution. The van der Waals interactions are shown to play a crucial role in the calculated complexation selectivity. Calculations using Lennard-Jones 6-12 potentials and "standard" OPLS R-Cl* and epsilon(Cl) parameters for the Cl atoms of S lead to a preference for CCl4, in contrast to the selectivities observed experimentally in solution (CHCl3 > CH2Cl2 > CCl4). Based on systematic investigations of the relative free energies of binding of CHCl3/S, we derive a set of R-Cl* and epsilon(Cl) van der Waals parameters that account for experimental binding data. Although the complexes are of the van der Waals type, their electrostatic representation is also crucial for correct calculation of relative stabilities. Thus, the recognition of the "best guest" stems from a subtle balance of distance and time-dependent, cumulative noncovalent interactions between atoms of S and of L, which require an accurate representation. In addition, even in a weakly polar solvent, like chloroform, solvation effects are shown to modulate the recognition of the neutral substrates. (C) 1998 John Wiley & Sons, Inc. [References: 60]
机译:定量评估中性分子与“刚性”中性受体腔之间的“最佳拟合”是超分子化学,药物设计和生物学中一项艰巨的任务。我们通过在气相和氯仿溶液中对具有三个四面体客体(S = CH2Cl2,CHCl3和CCl4)的大环配体cryptophane-E(L)及其LS配合物进行分子动力学和自由能微扰模拟来研究这个问题。范德华相互作用在计算的络合选择性中起着至关重要的作用。使用S的Cl原子使用Lennard-Jones 6-12电势和“标准” OPLS R-Cl *和epsilon(Cl)参数进行计算会导致对CCl4的偏爱,这与在溶液中实验观察到的选择性相反(CHCl3> CH2Cl2 > CCl4)。基于对CHCl3 / S结合的相对自由能的系统研究,我们得出了一组R-Cl *和epsilon(Cl)范德华参数,用于说明实验结合数据。尽管复合物是范德华斯类型的,但它们的静电表示形式对于正确计算相对稳定性也至关重要。因此,“最佳来宾”的识别源于S和L原子之间的距离和时间依赖性累积非共价相互作用的微妙平衡,这需要精确表示。此外,即使在弱极性溶剂(如氯仿)中,溶剂化效果也会影响中性底物的识别。 (C)1998 John Wiley&Sons,Inc. [参考:60]

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