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Recent Advances in Molecular Docking for the Research and Discovery of Potential Marine Drugs

机译:潜在海洋药物研究和发现的分子对接的最新进展

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摘要

Marine drugs have long been used and exhibit unique advantages in clinical practices. Among the marine drugs that have been approved by the Food and Drug Administration (FDA), the protein–ligand interactions, such as cytarabine–DNA polymerase, vidarabine–adenylyl cyclase, and eribulin–tubulin complexes, are the important mechanisms of action for their efficacy. However, the complex and multi-targeted components in marine medicinal resources, their bio-active chemical basis, and mechanisms of action have posed huge challenges in the discovery and development of marine drugs so far, which need to be systematically investigated in-depth. Molecular docking could effectively predict the binding mode and binding energy of the protein–ligand complexes and has become a major method of computer-aided drug design (CADD), hence this powerful tool has been widely used in many aspects of the research on marine drugs. This review introduces the basic principles and software of the molecular docking and further summarizes the applications of this method in marine drug discovery and design, including the early virtual screening in the drug discovery stage, drug target discovery, potential mechanisms of action, and the prediction of drug metabolism. In addition, this review would also discuss and prospect the problems of molecular docking, in order to provide more theoretical basis for clinical practices and new marine drug research and development.
机译:海洋药物长期以来已经使用并在临床实践中表现出独特的优势。在由食品和药物管理局(FDA)批准的海洋药物中,蛋白质 - 配体相互作用,例如红氧化尼碱-DNA聚合酶,Vidarabine-adenylyl环化酶和​​纤维素 - 小管蛋白复合物是它们的重要作用机制功效。然而,海洋药用资源的复杂和多目标组成部分,其生物活性化学基础以及迄今为止的海洋药物的发现和发展有巨大挑战,这需要进行系统地深入调查。分子对接可以有效地预测蛋白质 - 配体配合物的结合模式和结合能量,并已成为计算机辅助药物设计(CADD)的主要方法,因此这种强大的工具已被广泛应用于海洋药物研究的许多方面。本综述介绍了分子对接的基本原理和软件,并进一步总结了这种方法在海洋药物发现和设计中的应用,包括药物发现阶段的早期虚拟筛查,药物目标发现,潜在的行动机制和预测药物代谢。此外,本综述还将讨论和展望分子对接的问题,以便为临床实践和新的海洋药物研发提供更多的理论依据。

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