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Progressive docking: A hybrid QSAR/docking approach for accelerating in silico high throughput screening

机译:渐进式对接:一种混合QSAR /对接方法,可加速计算机高通量筛选

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A combination of protein-ligand docking and ligand-based QSAR approaches has been elaborated, aiming to speed-up the process of virtual screening. In particular, this approach utilizes docking scores generated for already processed compounds to build predictive QSAR models that, in turn, assess hypothetical target binding affinities for yet undocked entries. The "progressive docking" has been tested on drug-like substances from the NCI database that have been docked into several unrelated targets, including human sex hormone binding globulin (SHBG), carbonic anhydrase, corticosteroid-binding globulin, SARS 3C-like protease, and HIV1 reverse transcriptase. We demonstrate that progressive docking can reduce the amount of computations 1.2- to 2.6-fold (when compared to traditional docking), while maintaining 80-99% hit recovery rates. This progressive-docking procedure, therefore, substantially accelerates high throughput screening, especially when using high accuracy (slower) docking approaches and large-sized datasets, and has allowed us to identify several novel potent nonsteroidal SHBG ligands.
机译:结合蛋白质-配体对接和基于配体的QSAR方法已被精心设计,旨在加快虚拟筛选的过程。特别地,此方法利用为已处理的化合物生成的对接分数来构建预测性QSAR模型,进而对尚未分离的条目评估假设的靶标结合亲和力。已对NCI数据库中类似药物的物质进行了“渐进对接”测试,这些物质已对接至几个不相关的目标,包括人类性激素结合球蛋白(SHBG),碳酸酐酶,皮质类固醇结合球蛋白,SARS 3C样蛋白酶,和HIV1逆转录酶。我们证明,渐进式对接可以将计算量减少1.2到2.6倍(与传统对接相比),同时保持80-99%的命中恢复率。因此,这种渐进式对接程序极大地加速了高通量筛选,尤其是在使用高精度(较慢)对接方法和大型数据集时,并且使我们能够鉴定出几种新颖的有效非甾体类SHBG配体。

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