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Computational Investigations on the Binding Mode of Ligands for the Cannabinoid-Activated G Protein-Coupled Receptor GPR18

机译:大麻素激活的G蛋白偶联受体GPR18的配体结合模式的计算研究

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摘要

GPR18 is an orphan G protein-coupled receptor (GPCR) expressed in cells of the immune system. It is activated by the cannabinoid receptor (CB) agonist ∆ -tetrahydrocannabinol (THC). Several further lipids have been proposed to act as GPR18 agonists, but these results still require unambiguous confirmation. In the present study, we constructed a homology model of the human GPR18 based on an ensemble of three GPCR crystal structures to investigate the binding modes of the agonist THC and the recently reported antagonists which feature an imidazothiazinone core to which a (substituted) phenyl ring is connected via a lipophilic linker. Docking and molecular dynamics simulation studies were performed. As a result, a hydrophobic binding pocket is predicted to accommodate the imidazothiazinone core, while the terminal phenyl ring projects towards an aromatic pocket. Hydrophobic interaction of Cys251 with substituents on the phenyl ring could explain the high potency of the most potent derivatives. Molecular dynamics simulation studies suggest that the binding of imidazothiazinone antagonists stabilizes transmembrane regions TM1, TM6 and TM7 of the receptor through a salt bridge between Asp118 and Lys133. The agonist THC is presumed to bind differently to GPR18 than to the distantly related CB receptors. This study provides insights into the binding mode of GPR18 agonists and antagonists which will facilitate future drug design for this promising potential drug target.
机译:GPR18是在免疫系统细胞中表达的孤儿G蛋白偶联受体(GPCR)。它由大麻素受体(CB)激动剂∆-四氢大麻酚(THC)激活。已经提出了几种其他脂质作为GPR18激动剂,但是这些结果仍然需要明确的确认。在本研究中,我们基于三个GPCR晶体结构的整体构建了人类GPR18的同源性模型,以研究激动剂THC和最近报道的以(取代的)苯环为咪唑并噻嗪酮核心的拮抗剂的结合模式。通过亲脂性接头连接。进行了对接和分子动力学模拟研究。结果,预计疏水结合口袋将容纳咪唑并噻嗪酮核,而末端苯环则朝着芳香口袋突出。 Cys251与苯环上取代基的疏水相互作用可以解释最有效衍生物的高效力。分子动力学模拟研究表明,咪唑并噻嗪酮拮抗剂的结合通过Asp118与Lys133之间的盐桥稳定了受体的跨膜区域TM1,TM6和TM7。据推测,激动剂THC与GPR18的结合不同于与远缘CB受体的结合。这项研究提供了对GPR18激动剂和拮抗剂结合模式的见解,这将有助于为这一有前途的潜在药物靶标设计未来的药物。

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