首页> 外文期刊>Journal of chemical theory and computation: JCTC >Bridging Calorimetry and Simulation through Precise Calculations of Cucurbituril-Guest Binding Enthalpies
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Bridging Calorimetry and Simulation through Precise Calculations of Cucurbituril-Guest Binding Enthalpies

机译:通过精确计算西葫芦-客体结合焓的桥接量热法和模拟

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We used microsecond time scale molecular dynamics simulations to compute, at high precision, binding enthalpies for cucurbit[7]uril (CB7) with eight guests in aqueous solution. The results correlate well with experimental data from previously published isothermal titration calorimetry studies, and decomposition of the computed binding enthalpies by interaction type provides plausible mechanistic insights. Thus, dispersion interactions appear to play a key role in stabilizing these complexes, due at least in part to the fact that their packing density is greater than that of water. On the other hand, strongly favorable Coulombic interactions between the host and guests are compensated by unfavorable solvent contributions, leaving relatively modest electrostatic contributions to the binding enthalpies. The better steric fit of the aliphatic guests into the circular host appears to explain why their binding enthalpies tend to be more favorable than those of the more planar aromatic guests. The present calculations also bear on the validity of the simulation force field. Somewhat unexpectedly, the TIP3P water yields better agreement with experiment than the TIP4P-Ew water model, although the latter is known to replicate the properties of pure water more accurately. More broadly, the present results demonstrate the potential for computational calorimetry to provide atomistic explanations for thermodynamic observations.
机译:我们使用微秒级的时标分子动力学模拟,以高精度计算了葫芦[7] uril(CB7)与八种客体在水溶液中的结合焓。结果与以前发表的等温滴定热研究的实验数据很好地相关,并且通过相互作用类型分解计算的结合焓提供了可能的机理见解。因此,分散相互作用似乎在稳定这些络合物中起关键作用,至少部分是由于它们的堆积密度大于水的堆积密度这一事实。另一方面,主体和客体之间强烈有利的库仑相互作用被不利的溶剂贡献所补偿,而对结合焓却保留了相对适度的静电作用。脂族客体与圆形主体的空间配合更好,这似乎可以解释为什么它们的结合焓往往比平面度更高的芳族客体更有利。目前的计算还取决于模拟力场的有效性。出乎意料的是,尽管已知TIP3P水模型可以更准确地复制纯净水的特性,但与TIP4P-Ew水模型相比,TIP3P水与实验的一致性更好。更广泛地说,本结果证明了计算量热法为热力学观察提供原子学解释的潜力。

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