Ohue Masahito, Matsuzaki Yuri, Uchikoga Nobuyuki, Ishida Takashi, Akiyama Yutaka
Graduate School of Information Science and Engineering, Tokyo Institute of Technology, 2-12-1 W8-76 Ookayama, Meguro-ku, Tokyo 152-8550, Japan.
Protein Pept Lett. 2014;21(8):766-78. doi: 10.2174/09298665113209990050.
The elucidation of protein-protein interaction (PPI) networks is important for understanding cellular structure and function and structure-based drug design. However, the development of an effective method to conduct exhaustive PPI screening represents a computational challenge. We have been investigating a protein docking approach based on shape complementarity and physicochemical properties. We describe here the development of the protein-protein docking software package "MEGADOCK" that samples an extremely large number of protein dockings at high speed. MEGADOCK reduces the calculation time required for docking by using several techniques such as a novel scoring function called the real Pairwise Shape Complementarity (rPSC) score. We showed that MEGADOCK is capable of exhaustive PPI screening by completing docking calculations 7.5 times faster than the conventional docking software, ZDOCK, while maintaining an acceptable level of accuracy. When MEGADOCK was applied to a subset of a general benchmark dataset to predict 120 relevant interacting pairs from 120 x 120 = 14,400 combinations of proteins, an F-measure value of 0.231 was obtained. Further, we showed that MEGADOCK can be applied to a large-scale protein-protein interaction-screening problem with accuracy better than random. When our approach is combined with parallel high-performance computing systems, it is now feasible to search and analyze protein-protein interactions while taking into account three-dimensional structures at the interactome scale. MEGADOCK is freely available at http://www.bi.cs.titech.ac.jp/megadock.
蛋白质-蛋白质相互作用(PPI)网络的阐明对于理解细胞结构与功能以及基于结构的药物设计至关重要。然而,开发一种有效的方法来进行详尽的PPI筛选是一项计算挑战。我们一直在研究一种基于形状互补性和物理化学性质的蛋白质对接方法。我们在此描述了蛋白质-蛋白质对接软件包“MEGADOCK”的开发,该软件包能够高速对大量蛋白质对接进行采样。MEGADOCK通过使用多种技术,如一种名为实成对形状互补(rPSC)分数的新型评分函数,减少了对接所需的计算时间。我们表明,MEGADOCK能够进行详尽的PPI筛选,其对接计算速度比传统对接软件ZDOCK快7.5倍,同时保持可接受的准确度水平。当将MEGADOCK应用于一个通用基准数据集的子集,从120×120 = 14,400种蛋白质组合中预测120对相关相互作用对时,获得了0.231的F值。此外,我们表明MEGADOCK可以应用于大规模蛋白质-蛋白质相互作用筛选问题,其准确度优于随机情况。当我们的方法与并行高性能计算系统相结合时,现在在考虑相互作用组规模的三维结构的同时搜索和分析蛋白质-蛋白质相互作用变得可行。MEGADOCK可在http://www.bi.cs.titech.ac.jp/megadock免费获取。