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Role of Molecular Dynamics and Related Methods in Drug Discovery

机译:分子动力学及相关方法在药物发现中的作用

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摘要

Molecular dynamics (MD) and related methods are close to becoming routine computational tools for drug discovery. Their main advantage is in explicitly treating structural flexibility and entropic effects. This allows a more accurate estimate of the thermodynamics and kinetics associated with drug target recognition and binding, as better algorithms and hardware architectures increase their use. Here, we review the theoretical background of MD and enhanced sampling methods, focusing on free-energy perturbation, metadynamics, steered MD, and other methods most consistently used to study drug target binding. We discuss unbiased MD simulations that nowadays allow the observation of unsupervised ligand target binding, assessing how these approaches help optimizing target affinity and drug residence time toward improved drug efficacy. Further issues discussed include allosteric modulation and the role of water molecules in ligand binding and optimization. We conclude by calling for more prospective studies to attest to these methods' utility in discovering novel drug candidates.
机译:分子动力学(MD)和相关方法已接近成为药物发现的常规计算工具。它们的主要优点是明确处理结构的柔韧性和熵效应。随着更好的算法和硬件体系结构的使用,可以更准确地估算与药物靶标识别和结合相关的热力学和动力学。在这里,我们回顾了医学博士和增强采样方法的理论背景,重点是自由能摄动,元动力学,定向医学博士和其他最常用于研究药物靶点结合的方法。我们讨论了当今无偏的MD模拟,该模拟允许观察无监督的配体靶标结合,评估这些方法如何帮助优化靶标亲和力和药物停留时间以提高药物功效。讨论的其他问题包括变构调节以及水分子在配体结合和优化中的作用。最后,我们呼吁进行更多的前瞻性研究,以证明这些方法在发现新型药物候选物中的效用。

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