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A series of propofol analogs design by targeting pentameric ligand-gated ion channel in silico method

机译:靶向五聚体配体门离子通道的计算机模拟设计一系列异丙酚类似物

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摘要

The crystal complex propofol/GLIC (the bacterial homologue from Gloeobacter violaceus) recently determined also showed sensitivity to general anesthetics, belonging to the pLGIC (pentameric ligand-gated ion channels) family as a homopentameric member, which are potentiated and inhibited by general anesthetics and mimic changes elicited by anesthetics in physiologic targets as ion channels, providing the useful information for general anesthetics and allosteric modulators design. Thirteen active compounds selected from the previous data sets are used as reference and seed structures for developing novel general anesthetics via the scoring function of lead optimization using pharmacophoric & shape similarity integrated in Muse? molecular design workflow. Autodock4.0 is validated its accuracy by two computational procedures and used for docking calculations in this study. Finally, the top ten invented propofol analogs reported here exhibit more favorable binding energies geometric matching than propofol. Especially, the comp#1 fits the binding site well in geometric shape with the lowest binding energy than any other compounds, and makes the hydrophobic interaction with the binding site formed by M4 helixes and lipids of receptor as well. More importantly, the interactions between ligand and lipids caused by general-anesthetic binding would be specially considered in novel general anesthetic design. accordingly, the findings reported here may provide useful insights for discovering more effective general anesthetics.
机译:最近测定的丙泊酚/ GLIC晶体复合物(紫罗兰杆菌的细菌同源物)也显示出对作为全同五聚体成员的pLGIC(五聚体配体门控离子通道)家族的全身麻醉药的敏感性,它们被全身麻醉药和模仿麻醉药在生理靶标中引起的离子通道变化,为全身麻醉药和变构调节剂设计提供有用的信息。从前一组数据中选择的13种活性化合物用作参考和种子结构,以通过使用Muse?中集成的药效和形状相似性对铅进行优化的评分功能来开发新型的全身麻醉剂。分子设计工作流程。 Autodock4.0已通过两种计算程序验证了其准确性,并在本研究中用于对接计算。最后,这里报道的十大发明丙泊酚类似物比丙泊酚显示出更有利的结合能几何匹配。特别是,comp#1与其他化合物相比,具有最低的结合能,使几何形状的结合位点非常吻合,并且与由M4螺旋和受体脂质形成的结合位点进行疏水相互作用。更重要的是,在新型全身麻醉设计中将特别考虑由全身麻醉剂结合引起的配体与脂质之间的相互作用。因此,此处报道的发现可能为发现更有效的全身麻醉药提供有用的见识。

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