论文标题

在非极性溶剂中可以反转极性和非极性部分的作用吗?

Can the roles of polar and non-polar moieties be reversed in non-polar solvents?

论文作者

Dongmo, Cedrix J., Carrer, Manuel, Houvet, Marine, Skrbic, Tatjana, Graziano, Giuseppe, Giacometti, Achille

论文摘要

使用热力学整合,我们研究了具有不同极性的溶剂中18个氨基酸侧链等效物的溶剂化自由能,从最极性水到最非极性的环己烷。通过用氢原子代替骨干部分,并丢弃具有特殊特性的脯氨酸和甘氨酸,从20个天然氨基酸中获得了氨基酸侧链当量。对相对溶剂化的自由能的详细分析表明,如何为氨基酸实现坚固且明确的疏水量表。通过区分熵和焓术语的相对贡献,我们发现水和乙醇与众所周知的熵 - 触觉补偿相关,以及环己烷的相关性大大降低。这通常表明,在非极性溶剂中,极性和非极性部分的作用不能逆转。我们的发现与过去的实验和数值结果进行了比较,并且可能会详细介绍水作为生物溶剂的独特作用。

Using thermodynamics integration, we study the solvation free energy of 18 amino acid side chain equivalents in solvents with different polarity, ranging from the most polar water to the most non-polar cyclohexane. The amino acid side chain equivalents are obtained from the 20 natural amino acids by replacing the backbone part with a hydrogen atom, and discarding proline and glycine that have special properties. A detailed analysis of the relative solvation free energies suggests how it is possible to achieve a robust and unambiguous hydrophobic scale for the amino acids. By discriminating the relative contributions of the entropic and enthalpic terms, we find strong negative correlations in water and ethanol, associated with the well-known entropy-enthalpy compensation, and a much reduced correlation in cyclohexane. This shows that in general the role of the polar and non-polar moieties cannot be reversed in a non-polar solvent. Our findings are compared with past experimental as well as numerical results, and may shed additional light on the unique role of water as biological solvent.

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