首页> 美国卫生研究院文献>other >The Importance of Hydrogen Bonding and Aromatic Stacking to the Affinity and Efficacy of Cannabinoid Receptor CB2 Antagonist 5-(4-Chloro-3-methyl-phenyl)-1-(4-methyl-benzyl)-1H-pyrazole-3-carboxylic acid (133-trimethyl-bicyclo2.2.1hept-2-yl)-amide (SR144528)
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The Importance of Hydrogen Bonding and Aromatic Stacking to the Affinity and Efficacy of Cannabinoid Receptor CB2 Antagonist 5-(4-Chloro-3-methyl-phenyl)-1-(4-methyl-benzyl)-1H-pyrazole-3-carboxylic acid (133-trimethyl-bicyclo2.2.1hept-2-yl)-amide (SR144528)

机译:氢键键合和芳香堆积对大麻受体CB2拮抗剂5-(4-氯-3-甲基-苯基)-1-(4-甲基-苄基)-1H-吡唑-3-羧酸的亲和力和功效的重要性酸(133-三甲基-双环2.2.1庚-2-基)-酰胺(SR144528)

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摘要

Despite the therapeutic promise of the sub-nanomolar affinity cannabinoid CB2 antagonist, N-[(1S)-endo-1,3,3-trimethylbicyclo[2.2.1]heptan2-yl]-5-(4-chloro-3-methylphenyl)-1-[(4-methylphenyl)methyl]-1H-pyrazole-3-carboxamide (SR144528, >1), little is known about its binding site interactions and no primary interaction site for >1 at CB2 has been identified. We report here the results of Glide docking studies in our cannabinoid CB2 inactive state model that were then tested via compound synthesis, binding and functional assays. Our results show that the amide functional group of >1 is critical to its CB2 affinity and efficacy and that aromatic stacking interactions in the TMH5/6 aromatic cluster of CB2 are also important. Molecular modifications that increased the positive electrostatic potential in the region between the fenchyl and aromatic rings led to more efficacious compounds. This result is consistent with the EC-3 loop negatively charged amino acid, D275 (identified via Glide docking studies) acting as the primary interaction site for >1 and its analogs.
机译:尽管具有亚纳摩尔亲和力大麻素CB2拮抗剂的治疗前景,但N-[(1S)-endo-1,3,3-三甲基双环[2.2.1]庚基2-基] -5-(4-氯-3-甲基苯基) )-1-[((4-甲基苯基)甲基] -1H-吡唑-3-羧酰胺(SR144528,> 1 ),关于其结合位点相互作用的了解很少,对于>已确定CB2的1 。我们在这里报告了我们的大麻素CB2非活性状态模型中滑翔对接研究的结果,然后通过化合物合成,结合和功能分析对其进行了测试。我们的结果表明,> 1 的酰胺官能团对其CB2亲和力和功效至关重要,并且CB2的TMH5 / 6芳族簇中的芳族堆积相互作用也很重要。增加在芬基环和芳族环之间的区域中的正静电势的分子修饰导致更有效的化合物。此结果与EC-3环带负电荷的氨基酸D275(通过Glide对接研究确定)一致,该氨基酸充当> 1 及其类似物的主要相互作用位点。

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