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Energetics of the protein-DNA-water interaction

机译:蛋白质-DNA-水相互作用的能量学

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Background To understand the energetics of the interaction between protein and DNA we analyzed 39 crystallographically characterized complexes with the HINT (Hydropathic INTeractions) computational model. HINT is an empirical free energy force field based on solvent partitioning of small molecules between water and 1-octanol. Our previous studies on protein-ligand complexes demonstrated that free energy predictions were significantly improved by taking into account the energetic contribution of water molecules that form at least one hydrogen bond with each interacting species. Results An initial correlation between the calculated HINT scores and the experimentally determined binding free energies in the protein-DNA system exhibited a relatively poor r2 of 0.21 and standard error of ± 1.71 kcal mol-1. However, the inclusion of 261 waters that bridge protein and DNA improved the HINT score-free energy correlation to an r2 of 0.56 and standard error of ± 1.28 kcal mol-1. Analysis of the water role and energy contributions indicate that 46% of the bridging waters act as linkers between amino acids and nucleotide bases at the protein-DNA interface, while the remaining 54% are largely involved in screening unfavorable electrostatic contacts. Conclusion This study quantifies the key energetic role of bridging waters in protein-DNA associations. In addition, the relevant role of hydrophobic interactions and entropy in driving protein-DNA association is indicated by analyses of interaction character showing that, together, the favorable polar and unfavorable polar/hydrophobic-polar interactions (i.e., desolvation) mostly cancel.
机译:背景技术为了了解蛋白质与DNA相互作用的能量学,我们使用HINT(Hydropathic INTeractions)计算模型分析了39种具有晶体学特征的复合物。 HINT是基于小分子在水和1-辛醇之间的溶剂分配的经验自由能力场。我们先前对蛋白质-配体复合物的研究表明,通过考虑与每个相互作用的物种形成至少一个氢键的水分子的能量贡献,可以显着改善自由能的预测。结果在蛋白质-DNA系统中,计算出的HINT得分与实验确定的结合自由能之间的初始相关性显示出相对差的r 2 为0.21,标准误为±1.71 kcal mol -1 。但是,包含261个桥接蛋白质和DNA的水改善了HINT无分数能量相关性,r 2 为0.56,标准误为±1.28 kcal mol -1 。对水的作用和能量贡献的分析表明,46%的桥连水充当蛋白质-DNA界面上氨基酸和核苷酸碱基之间的连接子,而其余54%主要参与筛选不利的静电接触。结论本研究量化了桥接水在蛋白质-DNA关联中的关键能量作用。另外,通过相互作用特性的分析表明疏水相互作用和熵在驱动蛋白质-DNA缔合中的相关作用,表明有利的极性和不利的极性/疏水-极性相互作用(即去溶剂化)一起被大部分抵消。

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