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Ensemble-Based Virtual Screening Reveals Potential Novel Antiviral Compounds for Avian Influenza Neuraminidase

机译:基于集合的虚拟筛选揭示了禽流感神经氨酸酶的潜在新型抗病毒化合物。

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摘要

Avian influenza virus subtype H5N1 is a potential pandemic threat with human-adapted strains resistant to antiviral drugs. Although virtual screening (VS) against a crystal or relaxed receptor structure is an established method to identify potential inhibitors, the more dynamic changes within binding sites are neglected. To accommodate full receptor flexibility, we use AutoDock4 to screen the NCI diversity set against representative receptor ensembles extracted from explicitly solvated molecular dynamics simulations of the neuraminidase system. The top hits are redocked to the entire nonredundant receptor ensemble and rescored using the relaxed complex scheme (RCS). Of the 27 top hits reported, half ranked very poorly if only crystal structures are used. These compounds target the catalytic cavity as well as the newly identified 150- and 430-cavities, which exhibit dynamic properties in electrostatic surface and geometric shape. This ensemble-based VS and RCS approach may offer improvement over existing strategies for structure-based drug discovery.
机译:禽流感病毒H5N1亚型是对人类适应性强的抗病毒药物株的潜在大流行威胁。尽管针对晶体或松弛受体结构的虚拟筛选(VS)是确定潜在抑制剂的既定方法,但结合位点内更动态的变化被忽略了。为了适应完整的受体灵活性,我们使用AutoDock4来筛选NCI多样性集,以针对从神经氨酸酶系统的明确溶剂化分子动力学模拟中提取的代表性受体集合。热门歌曲重新定位到整个非冗余受体集合,并使用轻松复杂方案(RCS)进行评分。如果仅使用晶体结构,则在报告的27个热门歌曲中,有一半的排名很差。这些化合物的目标是催化腔以及新近确定的150和430腔,它们在静电表面和几何形状中表现出动态特性。这种基于整体的VS和RCS方法可能会比基于结构的药物发现的现有策略有所改进。

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