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Automated docking of ligands to antibodies: methods and applications.

机译:配体与抗体的自动对接:方法和应用。

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Many approaches to studying protein-ligand interactions by computational docking are currently available. Given the structures of a protein and a ligand, the ultimate goal of all docking methods is to predict the structure of the resulting complex. This requires a suitable representation of molecular structures and properties, search algorithms to efficiently scan the configuration space for favorable interaction geometries, and accurate scoring functions to evaluate and rank the generated orientations. For many of the available methods, tests on experimentally known antibody-antigen or antibody-hapten complexes have appeared in the literature. In addition, some of them have been used in predictive studies on antibody-ligand interactions to provide structural insights where adequate experimental information is missing. The AutoDock program is presented as example of a method for flexibly docking ligands to antibodies. Applying parameters of the second-generation AMBER force field, three antibody-hapten complexes (AN02, DB3, NC6.8) are used as new test cases to analyze the ability of the method to reproduce experimental findings. The X-ray structures could be reconstituted and the corresponding solutions were ranked with best energy score in all cases. Docking to the free instead of the complexed NC6.8 structure indicated the limits of the rigid protein treatment, although fairly good guesses about the location of the binding site and the contact residues could still be obtained if conformational flexibility was allowed at least in the ligand. Copyright 2000 Academic Press.
机译:当前有许多通过计算对接研究蛋白质-配体相互作用的方法。给定蛋白质和配体的结构,所有对接方法的最终目标是预测所得复合物的结构。这需要分子结构和性质的适当表示,有效地扫描配置空间以寻找有利的相互作用几何结构的搜索算法,以及评估和排列生成的方向的准确评分功能。对于许多可用方法,文献中已经出现了对实验已知的抗体-抗原或抗体-半抗原复合物的测试。此外,其中一些已用于抗体-配体相互作用的预测研究中,以提供缺少足够实验信息的结构见解。提供AutoDock程序作为将配体灵活对接至抗体的方法的示例。应用第二代AMBER力场的参数,将三个抗体-半抗原复合物(AN02,DB3,NC6.8)用作新的测试案例,以分析该方法再现实验结果的能力。在所有情况下,都可以重构X射线结构,并以最佳能量评分对相应的解决方案进行排名。与游离的而不是复杂的NC6.8结构对接表明了刚性蛋白质处理的局限性,尽管如果至少在配体中允许构象柔韧性,仍然可以很好地猜测结合位点的位置和接触残基。版权所有2000学术出版社。

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