首页> 外文期刊>Journal of the American Chemical Society >Binding free energy contributions of interfacial waters in HIV-1 protease/inhibitor complexes - art. no. JA058042G
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Binding free energy contributions of interfacial waters in HIV-1 protease/inhibitor complexes - art. no. JA058042G

机译:HIV-1蛋白酶/抑制剂复合物中界面水的结合自由能贡献-艺术。没有。 JA058042G

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Water molecules are commonly observed in crystal structures of protein-ligand complexes where they mediate protein-ligand binding. It is of considerable theoretical and practical importance to determine quantitatively the individual free energy contributions of these interfacial water molecules to protein-ligand binding and to elucidate factors that influence them. The double-decoupling free energy molecular dynamics simulation method has been used to calculate the binding free energy contribution for each of the four interfacial water molecules observed in the crystal structure of HIV-1 protease complexed with KNI-272, a potent inhibitor. While two of these water molecules contribute significantly to the binding free energy, the other two have close to zero contribution. It was further observed that the protonation states of two catalytic aspartate residues, Asp25 and Asp125, strongly influence the free energy contribution of a conserved water molecule Wat301 and that different inhibitors significantly influence the free energy contribution of Wat301. Our results have important implications on our understanding of the role of interfacial water molecules in protein-ligand binding and to structure-based drug design aimed at incorporating these interfacial water molecules into ligands.
机译:通常在蛋白质-配体复合物的晶体结构中观察到水分子,在其中它们介导蛋白质-配体结合。定量确定这些界面水分子对蛋白质-配体结合的单个自由能贡献并阐明影响它们的因素具有相当大的理论和实践意义。双解耦自由能分子动力学模拟方法已用于计算在与有效抑制剂KNI-272复合的HIV-1蛋白酶的晶体结构中观察到的四个界面水分子各自的结合自由能贡献。尽管这些水分子中的两个大大促进了结合自由能,但其他两个几乎接近零。进一步观察到,两个催化天冬氨酸残基Asp25和Asp125的质子化状态强烈影响保守水分子Wat301的自由能贡献,并且不同的抑制剂显着影响Wat301的自由能贡献。我们的结果对我们理解界面水分子在蛋白质-配体结合中的作用以及旨在将这些界面水分子纳入配体的基于结构的药物设计具有重要意义。

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