配体重组和构象约束对DAPY非核苷类HIV逆转录酶抑制剂结合自由能的影响。

Emilio Gallicchio
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引用次数: 15

摘要

本文报道了计算机模拟伊曲维林(TMC125)和利匹韦林(TMC278)与HIV逆转录酶结合的结果。当考虑施加扭约束时的自由能时,证实了在施加扭约束或不施加扭约束时得到的约束自由能估计是一致的。与更灵活的TMC278抑制剂相比,这些约束对TMC125结合的热力学和表观动力学的影响较小。结合的重组自由能的概念有助于理解和分类这些效应。与预期相反,由于抑制了结合/解结合途径,以及由于不受约束直接控制的旋转自由度的影响,构象约束的使用并没有始终增强结合自由能估计的收敛性。讨论了有关结合的热力学驱动力和配体“抖动”和“摆动”运动的作用的物理见解。基于这些见解,我们得出结论,如果化学上可行,理想的抑制剂应具有TMC125的静电电荷分布,从而与受体形成强相互作用,并具有TMC278的更大更灵活的取代基,从而最小化重组自由能惩罚和抗性突变的影响,适当修饰,如TMC125,从而在溶液中游离时不有利于形成非结合的能力扩展构象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Role of Ligand Reorganization and Conformational Restraints on the Binding Free Energies of DAPY Non-Nucleoside Inhibitors to HIV Reverse Transcriptase.

The results of computer simulations of the binding of etravirine (TMC125) and rilpivirine (TMC278) to HIV reverse transcriptase are reported. It is confirmed that consistent binding free energy estimates are obtained with or without the application of torsional restraints when the free energies of imposing the restraints are taken into account. The restraints have a smaller influence on the thermodynamics and apparent kinetics of binding of TMC125 compared to the more flexible TMC278 inhibitor. The concept of the reorganization free energy of binding is useful to understand and categorize these effects. Contrary to expectations, the use of conformational restraints did not consistently enhance convergence of binding free energy estimates due to suppression of binding/unbinding pathways and due to the influence of rotational degrees of freedom not directly controlled by the restraints. Physical insights concerning the thermodynamic driving forces for binding and the role of "jiggling" and "wiggling" motion of the ligands are discussed. Based on these insights we conclude that an ideal inhibitor, if chemically realizable, would possess the electrostatic charge distribution of TMC125, so as to form strong interactions with the receptor, and the larger and more flexible substituents of TMC278, so as to minimize reorganization free energy penalties and the effects of resistance mutations, suitably modified, as in TMC125, so as to disfavor the formation of non-binding competent extended conformations when free in solution.

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