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ReverseScreen3D: A structure-based ligand matching method to identify protein targets

机译:ReverseScreen3D:一种基于结构的配体匹配方法,可识别蛋白质靶标

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摘要

Ligand promiscuity, which is now recognized as an extremely common phenomenon, is a major underlying cause of drug toxicity. We have developed a new reverse virtual screening (VS) method called ReverseScreen3D, which can be used to predict the potential protein targets of a query compound of interest. The method uses a 2D fingerprint-based method to select a ligand template from each unique binding site of each protein within a target database. The target database contains only the structurally determined bioactive conformations of known ligands. The 2D comparison is followed by a 3D structural comparison to the selected query ligand using a geometric matching method, in order to prioritize each target binding site in the database. We have evaluated the performance of the ReverseScreen2D and 3D methods using a diverse set of small molecule protein inhibitors known to have multiple targets, and have shown that they are able to provide a highly significant enrichment of true targets in the database. Furthermore, we have shown that the 3D structural comparison improves early enrichment when compared with the 2D method alone, and that the 3D method performs well even in the absence of 2D similarity to the template ligands. By carrying out further experimental screening on the prioritized list of targets, it may be possible to determine the potential targets of a new compound or determine the off-targets of an existing drug. The ReverseScreen3D method has been incorporated into a Web server, which is freely available at http://www.modelling.leeds.ac.uk/ReverseScreen3D.
机译:配体滥交,现在被认为是一种极为普遍的现象,是造成药物毒性的主要原因。我们已经开发了一种称为ReverseScreen3D的新的反向虚拟筛选(VS)方法,该方法可用于预测目标查询化合物的潜在蛋白质靶标。该方法使用基于2D指纹的方法从目标数据库内每种蛋白质的每个唯一结合位点中选择配体模板。目标数据库仅包含已知配体的结构确定的生物活性构象。在2D比较之后,使用几何匹配方法对选定查询配体进行3D结构比较,以便对数据库中的每个目标结合位点进行优先排序。我们已经评估了ReverseScreen2D和3D方法的性能,该方法使用了多种已知具有多个目标的小分子蛋白质抑制剂,并且表明它们能够在数据库中提供高度有效的真实目标。此外,我们已经显示,与单独的2D方法相比,3D结构比较可改善早期富集,并且即使在与模板配体没有2D相似性的情况下,3D方法也能表现良好。通过对目标的优先顺序列表进行进一步的实验筛选,可以确定新化合物的潜在目标或确定现有药物的偏离目标。 ReverseScreen3D方法已合并到Web服务器中,该服务器可从http://www.modelling.leeds.ac.uk/ReverseScreen3D免费获得。

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