Center of Growth, Metabolism and Aging, Key Laboratory of Bio-Resource and Eco-Environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, China.
Animal Disease Prevention and Food Safety Key Laboratory of Sichuan Province, Microbiology and Metabolic Engineering Key Laboratory of Sichuan Province, Chengdu, China.
Brief Bioinform. 2022 May 13;23(3). doi: 10.1093/bib/bbac087.
Protein-ligand docking is an essential method in computer-aided drug design and structural bioinformatics. It can be used to identify active compounds and reveal molecular mechanisms of biological processes. A successful docking usually requires thorough conformation sampling and scoring, which are computationally expensive and difficult. Recent studies demonstrated that it can be beneficial to docking with the guidance of existing similar co-crystal structures. In this work, we developed a protein-ligand docking method, named FitDock, which fits initial conformation to the given template using a hierarchical multi-feature alignment approach, subsequently explores the possible conformations and finally outputs refined docking poses. In our comprehensive benchmark tests, FitDock showed 40%-60% improvement in terms of docking success rate and an order of magnitude faster over popular docking methods, if template structures exist (> 0.5 ligand similarity). FitDock has been implemented in a user-friendly program, which could serve as a convenient tool for drug design and molecular mechanism exploration. It is now freely available for academic users at http://cao.labshare.cn/fitdock/.
蛋白质配体对接是计算机辅助药物设计和结构生物信息学的重要方法。它可用于识别活性化合物并揭示生物过程的分子机制。成功的对接通常需要彻底的构象采样和评分,这在计算上是昂贵且困难的。最近的研究表明,在现有类似共晶结构的指导下进行对接可能会有所帮助。在这项工作中,我们开发了一种蛋白质-配体对接方法,称为 FitDock,它使用分层多特征对齐方法将初始构象拟合到给定的模板,然后探索可能的构象,并最终输出精修的对接构象。在我们全面的基准测试中,如果存在模板结构(>0.5 配体相似度),FitDock 在对接成功率方面提高了 40%-60%,并且比流行的对接方法快一个数量级。FitDock 已在一个用户友好的程序中实现,可作为药物设计和分子机制探索的便捷工具。它现在可在学术用户免费使用,网址为:http://cao.labshare.cn/fitdock/。