首页> 外文期刊>Journal of the American Chemical Society >Free energy, entropy, and induced fit in host-guest recognition: Calculations with the second-generation mining minima algorithm
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Free energy, entropy, and induced fit in host-guest recognition: Calculations with the second-generation mining minima algorithm

机译:主客体识别中的自由能,熵和诱导拟合:使用第二代挖掘最小值算法进行的计算

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摘要

This study applies a novel computational method to study molecular recognition for three sets of synthetic hosts: molecular clips, molecular tweezers, and a synthetic barbiturate receptor. The computed standard free energies of binding for the 12 binding reactions agree closely with experiment and provide insight into the roles of configurational entropy, preorganization, and induced fit in the systems studied. The computed changes in configurational entropy are comparable in magnitude to the changes in mean potential plus solvation energy, and they result primarily from changes in the average width of the energy wells upon binding. A strong correlation is observed between the changes in configurational energy and configurational entropy upon binding, resulting in near-linear compensation analogous to classical entropyenthalpy compensation.
机译:这项研究采用一种新颖的计算方法来研究三组合成宿主的分子识别:分子夹,分子镊子和合成巴比妥酸盐受体。计算出的用于12个结合反应的结合标准自由能与实验非常吻合,并提供了对结构熵,预组织和诱导拟合在所研究系统中的作用的深入了解。所计算的构型熵的变化在大小上可与平均电势加溶剂化能的变化相媲美,并且它们主要是由结合时能量阱的平均宽度的变化引起的。在结合时,在构型能量的变化和构型熵之间观察到强烈的相关性,导致类似于经典熵焓补偿的近线性补偿。

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