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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Accelerating the Calculation of Protein-Ligand Binding Free Energy and Residence Times Using Dynamically Optimized Collective Variables
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Accelerating the Calculation of Protein-Ligand Binding Free Energy and Residence Times Using Dynamically Optimized Collective Variables

机译:使用动态优化的集体变量加速蛋白质 - 配体结合自由能量和停留时间的计算

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摘要

Elucidation of the ligand/protein binding interaction is of paramount relevance in pharmacology to increase the success rate of drug design. To this end, a number of computational methods have been proposed; however all of them suffer from limitations since the ligand binding/unbinding transitions to the molecular target involve many slow degrees of freedom that hamper a full characterization of the binding process. Being able to express this transition in simple and general slow degrees of freedom would give a distinctive advantage, since it would require minimal knowledge of the system under study, while in turn it would elucidate its physics and accelerate the convergence speed of enhanced sampling methods relying on collective variables. In this study we pursuit this goal by combining for the first time variational approach to conformational dynamics with funnel metadynamics. In so doing, we predict for the benzamidine/trypsin system the ligand binding mode, and we accurately compute the absolute protein ligand binding free energy and unbinding rate at unprecedented low computational cost. Finally, our simulation protocol reveals the energetics and structural details of the ligand binding mechanism and shows that water and binding pocket solvation/desolvation are the dominant slow degrees of freedom.
机译:配体/蛋白结合相互作用的阐明是在药理学中最重要的相关性,以增加药物设计的成功率。为此,已经提出了许多计算方法;然而,所有这些都患有限制,因为对分子靶标的配体结合/解除过渡涉及许多缓慢的自由度,其妨碍充分表征结合过程。能够以简单和一般的缓慢自由表达这种转变将具有鲜明的优势,因为它需要对研究中的系统的最小知识,而反过来它将阐明其物理并加速增强的采样方法的收敛速度依赖于依赖于增强的采样方法的收敛速度关于集体变量。在这项研究中,我们通过组合第一次改变与漏斗元动态的变化方法相结合来追求这一目标。在这样做时,我们预测苯胺尼蛋白/胰蛋白酶体系的配体结合模式,并且我们以前所未有的低计算成本准确地计算无限蛋白配体和无界速率的绝对蛋白质配体。最后,我们的仿真协议揭示了配体结合机制的能量和结构细节,并表明水和结合袋溶剂溶剂/去溶剂是主要的慢速自由度。

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