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Systematic Exploitation of Multiple Receptor Conformations for Virtual Ligand Screening

机译:虚拟配体筛选的多个受体构象的系统开发

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摘要

The role of virtual ligand screening in modern drug discovery is to mine large chemical collections and to prioritize for experimental testing a comparatively small and diverse set of compounds with expected activity against a target. Several studies have pointed out that the performance of virtual ligand screening can be improved by taking into account receptor flexibility. Here, we systematically assess how multiple crystallographic receptor conformations, a powerful way of discretely representing protein plasticity, can be exploited in screening protocols to separate binders from non-binders. Our analyses encompass 36 targets of pharmaceutical relevance and are based on actual molecules with reported activity against those targets. The results suggest that an ensemble receptor-based protocol displays a stronger discriminating power between active and inactive molecules as compared to its standard single rigid receptor counterpart. Moreover, such a protocol can be engineered not only to enrich a higher number of active compounds, but also to enhance their chemical diversity. Finally, some clear indications can be gathered on how to select a subset of receptor conformations that is most likely to provide the best performancein a real life scenario.
机译:虚拟配体筛选在现代药物发现中的作用是挖掘大量的化学物质,并优先进行具有相对于目标的预期活性的相对较小和多样化的一组化合物的实验测试。一些研究指出,通过考虑受体的柔韧性可以改善虚拟配体筛选的性能。在这里,我们系统地评估了筛选协议中如何利用多种晶体受体构象(一种离散表示蛋白质可塑性的有效方法)来将粘合剂与非粘合剂分开。我们的分析涵盖了36个与药物相关的靶标,并且基于对这些靶标具有报道活性的实际分子。结果表明,与标准的单个刚性受体对应物相比,基于整体受体的方案在活性和非活性分子之间显示出更强的区分能力。此外,可以设计这种方案,不仅可以富集更多的活性化合物,还可以增强其化学多样性。最后,可以就如何选择最有可能提供最佳性能的受体构象子集收集一些明确的指示。在现实生活中。

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