首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Molecular Docking Guided Grid-Independent Descriptor Analysis to Probe the Impact of Water Molecules on Conformational Changes of hERG Inhibitors in Drug Trapping Phenomenon
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Molecular Docking Guided Grid-Independent Descriptor Analysis to Probe the Impact of Water Molecules on Conformational Changes of hERG Inhibitors in Drug Trapping Phenomenon

机译:分子对接引导的网格无关描述子分析探讨水分子对药物诱捕现象中hERG抑制剂构象变化的影响

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摘要

Human ether a-go-go related gene (hERG) or KV11.1 potassium channels mediate the rapid delayed rectifier current (IKr) in cardiac myocytes. Drug-induced inhibition of hERG channels has been implicated in the development of acquired long QT syndrome type (aLQTS) and fatal arrhythmias. Several marketed drugs have been withdrawn for this reason. Therefore, there is considerable interest in developing better tests for predicting drugs which can block the hERG channel. The drug-binding pocket in hERG channels, which lies below the selectivity filter, normally contains K+ ions and water molecules. In this study, we test the hypothesis that these water molecules impact drug binding to hERG. We developed 3D QSAR models based on alignment independent descriptors (GRIND) using docked ligands in open and closed conformations of hERG in the presence (solvated) and absence (non-solvated) of water molecules. The ligand–protein interaction fingerprints (PLIF) scheme was used to summarize and compare the interactions. All models delineated similar 3D hERG binding features, however, small deviations of about ~0.4 Å were observed between important hotspots of molecular interaction fields (MIFs) between solvated and non-solvated hERG models. These small changes in conformations do not affect the performance and predictive power of the model to any significant extent. The model that exhibits the best statistical values was attained with a cryo_EM structure of the hERG channel in open state without water. This model also showed the best R2 of 0.58 and 0.51 for the internal and external validation test sets respectively. Our results suggest that the inclusion of water molecules during the docking process has little effect on conformations and this conformational change does not impact the predictive ability of the 3D QSAR models.
机译:人源醚相关基因(hERG)或KV11.1钾通道介导心肌细胞中的快速延迟整流电流(IKr)。药物诱导的对hERG通道的抑制与获得性长QT综合征类型(aLQTS)和致命性心律失常的发生有关。为此,已经撤出了几种市售药物。因此,人们对开发更好的测试药物以预测可以阻断hERG通道的药物感兴趣。 hERG通道中的药物结合袋位于选择性过滤器下方,通常包含K + 离子和水分子。在这项研究中,我们测试了这些水分子影响药物与hERG结合的假设。我们在存在(溶剂化)和不存在(非溶剂化)水分子的情况下,使用对接配体以hERG的开放和闭合构象开发了基于比对独立描述符(GRIND)的3D QSAR模型。配体-蛋白质相互作用指纹(PLIF)方案用于总结和比较相互作用。所有模型都描绘出相似的3D hERG结合特征,但是,在溶剂化和未溶剂化的hERG模型之间,在分子相互作用场(MIF)的重要热点之间观察到约0.4Å的小偏差。这些小的构象变化不会在很大程度上影响模型的性能和预测能力。在没有水的情况下,在打开状态下通过hERG通道的cryo_EM结构获得了显示最佳统计值的模型。对于内部和外部验证测试集,该模型还分别显示出最佳的R 2 分别为0.58和0.51。我们的结果表明,在对接过程中包含水分子对构象影响很小,这种构象变化不会影响3D QSAR模型的预测能力。

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