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GAsDock: a new approach for rapid flexible docking based on an improved multi-population genetic algorithm.

机译:GAsDock:一种基于改进的多种群遗传算法的快速灵活对接方法。

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Based on an improved multi-population genetic algorithm, a new fast flexible docking program, GAsDock, was developed. The docking accuracy, screening efficiency, and docking speed of GAsDock were evaluated by the docking results of thymidine kinase (TK) and HIV-1 reverse transcriptase (RT) enzyme with 10 available inhibitors of each protein and 990 randomly selected ligands. Nine of the ten known inhibitors of TK were accurately docked into the protein active site, the root-mean-square deviation (RMSD) values between the docking and X-ray crystal structures are less than 1.7A; binding poses (conformation and orientation) of 9 of the 10 known inhibitors of RT were reproduced by GAsDock with RMSD values less than 2.0A. The docking time is approximately in proportion to the number of rotatable bonds of ligands; GAsDock can finish a docking simulation within 60s for a ligand with no more than 20 rotatable bonds. Results indicate that GAsDock is an accurate and remarkably faster docking program in comparison with other docking programs, which is applausive in the application of virtual screening.
机译:基于改进的多种群遗传算法,开发了一种新的快速灵活对接程序GAsDock。通过胸苷激酶(TK)和HIV-1逆转录酶(RT)酶与每种蛋白质的10种可用抑制剂和990种随机选择的配体的对接结果,评估了GAsDock的对接准确性,筛选效率和对接速度。十种已知的TK抑制剂中有九种准确地对接到蛋白质活性位点,对接和X射线晶体结构之间的均方根偏差(RMSD)值小于1.7A; GAsDock再现了10种已知的RT抑制剂中9种的9种结合姿势(构象和方向),RMSD值小于2.0A。对接时间大约与配体可旋转键的数量成正比。 GAsDock可以在60秒内完成对不超过20个可旋转键的配体的对接模拟。结果表明,与其他对接程序相比,GAsDock是一种准确且速度显着更快的对接程序,在虚拟筛选的应用中值得称赞。

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