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A local fingerprint for hydrophobicity and hydrophilicity: From methane to peptides

机译:疏水性和亲水性的局部指纹:从甲烷到肽

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摘要

An important characteristic that determines the behavior of a solute in water is whether it is hydrophobic or hydrophilic. The traditional classification is based on chemical experience and heuristics. However, this does not reveal how the local environment modulates this important property. We present a local fingerprint for hydrophobicity and hydrophilicity inspired by the two body contribution to the entropy. This fingerprint is an inexpensive, quantitative, and physically meaningful way of studying hydrophilicity and hydrophobicity that only requires as input the water-solute radial distribution functions. We apply our fingerprint to octanol, benzene, and 20 proteinogenic amino acids. Our measure of hydrophilicity is coherent with chemical experience, and moreover, it also shows how the character of an atom can change as its environment is changed. Finally, we use the fingerprint as a collective variable in a funnel metadynamics simulation of a host-guest system. The fingerprint serves as a desolvation collective variable that enhances transitions between the bound and unbound states. Published under license by AIP Publishing.
机译:确定水中溶质行为的重要特征是是否是疏水性或亲水性的。传统的分类是基于化学经验和启发式。但是,这并没有透露当地环境如何调制这一重要属性。我们提出了一种局部指纹,用于疏水性和亲水性,受到对熵的两个机构的贡献。这种指纹是一种廉价,定量和物理有意义的方法,用于研究亲水性和疏水性,只需要输入水溶性径向分布功能。我们将指纹应用于辛醇,苯和20种蛋白质原氨基酸。我们的亲水性衡量与化学经验相干,而且还表明了原子的特征在其环境变化时如何变化。最后,我们使用指纹作为主机系统漏斗Metadynamics模拟中的集体变量。指纹用作脱溶解的集体变量,可增强绑定和未绑定状态之间的转换。通过AIP发布在许可证下发布。

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