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Genetic algorithm with a crossover elitist preservation mechanism for protein–ligand docking

机译:具有交叉精英保留机制的蛋白质-配体对接遗传算法

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摘要

Protein–ligand docking plays an important role in computer-aided pharmaceutical development. Protein–ligand docking can be defined as a search algorithm with a scoring function, whose aim is to determine the conformation of the ligand and the receptor with the lowest energy. Hence, to improve an efficient algorithm has become a very significant challenge. In this paper, a novel search algorithm based on crossover elitist preservation mechanism (CEP) for solving protein–ligand docking problems is proposed. The proposed algorithm, namely genetic algorithm with crossover elitist preservation (CEPGA), employ the CEP to keep the elite individuals of the last generation and make the crossover more efficient and robust. The performance of CEPGA is tested on sixteen molecular docking complexes from RCSB protein data bank. In comparison with GA, LGA and SODOCK in the aspects of lowest energy and highest accuracy, the results of which indicate that the CEPGA is a reliable and successful method for protein–ligand docking problems.
机译:蛋白质-配体对接在计算机辅助药物开发中起着重要作用。蛋白质-配体对接可以定义为具有评分功能的搜索算法,其目的是确定能量最低的配体和受体的构象。因此,改进有效算法已经成为非常重要的挑战。本文提出了一种基于交叉精英保留机制(CEP)的新型搜索算法,用于解决蛋白质-配体对接问题。所提出的算法,即具有交叉精英保存的遗传算法(CEPGA),利用CEP来保留最后一代的精英个体,并使交叉更加有效和鲁棒。在来自RCSB蛋白数据库的16种分子对接复合物上测试了CEPGA的性能。与GA,LGA和SODOCK相比,在最低能量和最高准确性方面,其结果表明CEPGA是解决蛋白质-配体对接问题的可靠且成功的方法。

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