首页> 外文期刊>Journal of Computer-Aided Molecular Design >Docking performance of the glide program as evaluated on the Astex and DUD datasets: A complete set of glide SP results and selected results for a new scoring function integrating WaterMap and glide
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Docking performance of the glide program as evaluated on the Astex and DUD datasets: A complete set of glide SP results and selected results for a new scoring function integrating WaterMap and glide

机译:在Astex和DUD数据集上评估的滑行程序的对接性能:一组完整的滑行SP结果以及为集成WaterMap和滑行的新评分功能选择的结果

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摘要

Glide SP mode enrichment results for two preparations of the DUD dataset and native ligand docking RMSDs for two preparations of the Astex dataset are presented. Following a best-practices preparation scheme, an average RMSD of 1.140 ? for native ligand docking with Glide SP is computed. Following the same best-practices preparation scheme for the DUD dataset an average area under the ROC curve (AUC) of 0.80 and average early enrichment via the ROC (0.1 %) metric of 0.12 were observed. 74 and 56 % of the 39 best-practices prepared targets showed AUC over 0.7 and 0.8, respectively. Average AUC was greater than 0.7 for all best-practices protein families demonstrating consistent enrichment performance across a broad range of proteins and ligand chemotypes. In both Astex and DUD datasets, docking performance is significantly improved employing a best-practices preparation scheme over using minimally-prepared structures from the PDB. Enrichment results for WScore, a new scoring function and sampling methodology integrating WaterMap and Glide, are presented for four DUD targets, hivrt, hsp90, cdk2, and fxa. WScore performance in early enrichment is consistently strong and all systems examined show AUC > 0.9 and superior early enrichment to DUD best-practices Glide SP results.
机译:给出了两种制备的DUD数据集的Glide SP模式富集结果以及两种制备的Astex数据集的天然配体对接RMSD。按照最佳实践准备方案,平均RMSD为1.140?计算天然配体与Glide SP的对接。遵循针对DUD数据集的最佳实践准备方案,观察到ROC曲线(AUC)下的平均面积为0.80,通过ROC(0.1%)度量的平均早期富集度为0.12。 39个最佳实践目标中有74%和56%的AUC分别超过0.7和0.8。所有最佳实践蛋白质家族的平均AUC均大于0.7,这表明在广泛的蛋白质和配体化学型中均具有一致的富集性能。在Astex和DUD数据集中,与从PDB中最少准备的结构相比,采用最佳实践的准备方案可以显着提高对接性能。针对四个DUD目标hivrt,hsp90,cdk2和fxa,提供了将WaterMap和Glide集成在一起的新评分功能和采样方法WScore的浓缩结果。 WScore在早期富集方面的性能始终很强,并且所有检查的系统均显示AUC> 0.9,并且优于DUD最佳实践Glide SP结果的早期富集。

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