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Enthalpic and Entropic Contributions to Hydrophobicity

机译:焓和熵对疏水性的贡献

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Hydrophobic hydration plays a key role in a vast variety of biological processes, ranging from the formation of cells to protein folding and ligand binding. Hydrophobicity scales simplify the complex process of hydration by assigning a value describing the averaged hydrophobic character to each amino acid. Previously published scales were not able to calculate the enthalpic and entropic contributions to the hydrophobicity directly. We present a new method, based on Molecular Dynamics simulations and Grid Inhomogeneous Solvation Theory, that calculates hydrophobicity from enthalpic and entropic contributions. Instead of deriving these quantities from the temperature dependence of the free energy of hydration or as residual of the free energy and the enthalpy, we directly obtain these values from the phase space occupied by water molecules. Additionally, our method is able to identify regions with specific enthalpic and entropic properties, allowing to identify so-called "unhappy water" molecules, which are characterized by weak enthalpic interactions and unfavorable entropic constraints.
机译:疏水水合作用在从细胞形成到蛋白质折叠和配体结合等多种生物学过程中都起着关键作用。疏水量表通过为每个氨基酸分配一个描述平均疏水特性的值,简化了水合的复杂过程。先前发布的标度无法直接计算出焓和熵对疏水性的贡献。我们基于分子动力学模拟和网格非均匀溶剂化理论提出了一种新方法,该方法可根据焓和熵的贡献来计算疏水性。与其从水合自由能的温度依赖性或作为自由能和焓的残差来导出这些量,我们直接从水分子占据的相空间中获得这些值。此外,我们的方法能够识别具有特定焓和熵性质的区域,从而能够识别所谓的“不高兴的水”分子,这些分子的特征是焓相互作用弱和熵约束不利。

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