首页> 外文期刊>Journal of chemical theory and computation: JCTC >Molecular Interpretation of Preferential Interactions in Protein Solvation: A Solvent-Shell Perspective by Means of Minimum-Distance Distribution Functions
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Molecular Interpretation of Preferential Interactions in Protein Solvation: A Solvent-Shell Perspective by Means of Minimum-Distance Distribution Functions

机译:蛋白质溶剂中优先相互作用的分子解释:借助于最小距离分布函数的溶剂 - 壳体观点

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Preferential solvation is a fundamental parameter for the interpretation of solubility and solute structural stability. The molecular basis for solute-solvent interactions can be obtained through distribution functions, and the thermodynamic connection to experimental data depends on the computation of distribution integrals, specifically Kirk-wood-Buff integrals for the determination of preferential interactions. Standard radial distribution functions, however, are not convenient for the study of the solvation of complex, nonspherical solutes, as proteins. Here we show that minimum-distance distribution functions can be used to compute KB integrals while at the same time providing an insightful view of solute-solvent interactions at the molecular level. We compute preferential solvation parameters for Ribonuclease T1 in aqueous solutions of urea and trimethylamine N-oxide (TMAO) and show that, while macroscopic solvation shows that urea is preferentially bound to the protein surface and TMAO is preferentially excluded, both display specific density augmentations at the protein surface in dilute solutions. Therefore, direct protein-osmolyte interactions can play a role in the stability and activity of the protein even for preferentially hydrated systems. The generality of the distribution function and its natural connection to thermodynamic data suggest that it will be useful in general for the study of solvation in mixtures of structurally complex solutes and solvents.
机译:优先溶剂是解释溶解度和溶质结构稳定性的基本参数。通过分布函数可以获得溶质 - 溶剂相互作用的分子基础,与实验数据的热力学连接取决于分布积分的计算,特别是柯尔克木 - Buff积分用于确定优先相互作用。然而,标准的径向分布功能对于研究复合物的溶解剂,作为蛋白质的溶剂,是不方便的。在这里,我们表明最小距离分布功能可用于计算KB积分,同时提供分子水平的溶质溶剂相互作用的富有魅力观点。我们计算尿素和三甲胺N-氧化物水溶液(TMAO)的核糖核酸酶T1的优先溶剂化参数,表明,虽然宏观溶剂化表明尿素优先与蛋白质表面结合,但优先排除TMAO,两者都显示出特定的密度增强稀溶液中的蛋白质表面。因此,即使对于优先水合系统,直接蛋白质 - 渗透物相互作用也可以在蛋白质的稳定性和活性中起作用。分布功能的一般性及其与热力学数据的自然连接表明,对于在结构复杂溶质和溶剂的混合物中研究溶剂的研究将是有用的。

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