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GalaxySite: ligand-binding-site prediction by using molecular docking

机译:GalaxySite:使用分子预测配体结合位点 对接

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摘要

Knowledge of ligand-binding sites of proteins provides invaluable information for functional studies, drug design and protein design. Recent progress in ligand-binding-site prediction methods has demonstrated that using information from similar proteins of known structures can improve predictions. The GalaxySite web server, freely accessible at , combines such information with molecular docking for more precise binding-site prediction for non-metal ligands. According to the recent critical assessments of structure prediction methods held in 2010 and 2012, this server was found to be superior or comparable to other state-of-the-art programs in the category of ligand-binding-site prediction. A strong merit of the GalaxySite program is that it provides additional predictions on binding ligands and their binding poses in terms of the optimized 3D coordinates of the protein–ligand complexes, whereas other methods predict only identities of binding-site residues or copy binding geometry from similar proteins. The additional information on the specific binding geometry would be very useful for applications in functional studies and computer-aided drug discovery.
机译:蛋白质的配体结合位点的知识为功能研究,药物设计和蛋白质设计提供了宝贵的信息。配体结合位点预测方法的最新进展表明,使用来自已知结构的相似蛋白质的信息可以改善预测。可通过以下网址免费访问的GalaxySite Web服务器将此类信息与分子对接结合起来,以更精确地预测非金属配体的结合位点。根据2010年和2012年进行的结构预测方法的最新关键评估,发现该服务器在配体结合位点预测类别方面优于其他同类程序。 GalaxySite程序的一个强大优点是,它可以根据蛋白质-配体复合物的优化3D坐标提供有关结合配体及其结合姿势的其他预测,而其他方法只能预测结合位点残基的身份或复制结合几何形状。相似的蛋白质。有关特定结合几何形状的其他信息对于功能研究和计算机辅助药物发现中的应用将非常有用。

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