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Quantification of the Effects of Ionic Strength, Viscosity, and Hydrophobicity on Protein-Ligand Binding Affinity

机译:定量的离子强度,粘度和疏水性对蛋白质-配体结合亲和力的影响。

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摘要

In order to quantify the interactions between molecules of biological interest, the determination of the dissociation constant (K_d) is essential. Estimation of the binding affinity in this way is routinely performed in “favorable” conditions for macromolecules. Crucial data for ligand-protein binding elucidation is mainly derived from techniques (e.g., macromolecular crystallography) that require the addition of high concentration of salts and/or other additives. In this study we have evaluated the effect of temperature, ionic strength, viscosity, and hydrophobicity on the K_d of three previously characterized protein-ligand systems, based on variation in their binding sites, in order to provide insight into how these often overlooked unconventional circumstances impact binding affinity. Our conclusions are as follows: (1) increasing solvent viscosity in general is detrimental to ligand binding, (2) moderate increases in temperature have marginal effects on the dissociation constant, and (3) the degree of hydrophobicity of the ligand and the binding site determines the extent of the influence of cosolvents and salt concentration on ligand binding affinity.
机译:为了量化生物学上感兴趣的分子之间的相互作用,解离常数(K_d)的确定是必不可少的。以这种方式对结合亲和力的估计通常在大分子的“有利”条件下进行。阐明配体-蛋白质结合的关键数据主要来自需要添加高浓度盐和/或其他添加剂的技术(例如,大分子晶体学)。在这项研究中,我们基于其结合位点的变化,评估了温度,离子强度,粘度和疏水性对三个先前表征的蛋白质-配体系统的K_d的影响,以提供洞悉这些因素通常被忽视的常规条件影响结合亲和力。我们的结论如下:(1)一般而言,溶剂粘度的增加不利于配体的结合;(2)温度的适度升高对解离常数有边际影响;(3)配体的疏水度和结合位点确定助溶剂和盐浓度对配体结合亲和力的影响程度。

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