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Prediction of binding poses to FXR using multi-targeted docking combined with molecular dynamics and enhanced sampling

机译:使用多靶向对接结合分子动力学和增强的取样预测对FXR的结合姿势

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摘要

Advanced molecular docking methods often aim at capturing the flexibility of the protein upon binding to the ligand. In this study, we investigate whether instead a simple rigid docking method can be applied, if combined with multiple target structures to model the backbone flexibility and molecular dynamics simulations to model the sidechain and ligand flexibility. The methods are tested for the binding of 35 ligands to FXR as part of the first stage of the Drug Design Data Resource (D3R) Grand Challenge 2 blind challenge. The results show that the multiple-target docking protocol performs surprisingly well, with correct poses found for 21 of the ligands. MD simulations started on the docked structures are remarkably stable, but show almost no tendency of refining the structure closer to the experimentally found binding pose. Reconnaissance metadynamics enhances the exploration of new binding poses, but additional collective variables involving the protein are needed to exploit the full potential of the method.
机译:先进的分子对接方法通常旨在捕获与配体结合后蛋白质的柔韧性。在这项研究中,我们调查了是否可以使用简单的刚性对接方法,如果将其与多个目标结构结合以对骨架柔性进行建模,并通过分子动力学模拟来对侧链和配体柔性进行建模。作为药物设计数据资源(D3R)大挑战2盲挑战的第一阶段的一部分,测试了35种配体与FXR的结合方法。结果表明,多目标对接方案的表现出乎意料的好,其中21个配体的姿势正确。在对接结构上开始的MD模拟非常稳定,但是几乎没有显示出将结构更接近实验发现的结合姿势的趋势。侦察元动力学增强了对新结合姿势的探索,但是还需要涉及蛋白质的其他集体变量来发挥该方法的全部潜力。

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