Taboureau Olivier, Baell Jonathan B, Fernández-Recio Juan, Villoutreix Bruno O
Center for Biological Sequences Analysis, Department of Systems Biology, Technical University of Denmark, 2800 Kongens Lyngby, Denmark.
Chem Biol. 2012 Jan 27;19(1):29-41. doi: 10.1016/j.chembiol.2011.12.007.
Bioinformatics and chemoinformatics approaches contribute to hit discovery, hit-to-lead optimization, safety profiling, and target identification and enhance our overall understanding of the health and disease states. A vast repertoire of computational methods has been reported and increasingly combined in order to address more and more challenging targets or complex molecular mechanisms in the context of large-scale integration of structure and bioactivity data produced by private and public drug research. This review explores some key computational methods directly linked to drug discovery and chemical biology with a special emphasis on compound collection preparation, virtual screening, protein docking, and systems pharmacology. A list of generally freely available software packages and online resources is provided, and examples of successful applications are briefly commented upon.
生物信息学和化学信息学方法有助于发现先导化合物、进行先导化合物到候选药物的优化、安全性分析以及靶点识别,并增进我们对健康和疾病状态的整体理解。为了应对公私药物研究产生的结构和生物活性数据大规模整合背景下越来越具挑战性的靶点或复杂分子机制,已报道了大量计算方法并越来越多地将它们结合起来。本综述探讨了一些与药物发现和化学生物学直接相关的关键计算方法,特别强调化合物库制备、虚拟筛选、蛋白质对接和系统药理学。提供了一份通常可免费获得的软件包和在线资源列表,并简要评论了成功应用的实例。