首页> 外文期刊>Journal of Medicinal Chemistry >Structure-Based Scaffold Repurposing for G Protein-Coupled Receptors: Transformation of Adenosine Derivatives into 5HT(2B)/5HT(2C) Serotonin Receptor Antagonists
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Structure-Based Scaffold Repurposing for G Protein-Coupled Receptors: Transformation of Adenosine Derivatives into 5HT(2B)/5HT(2C) Serotonin Receptor Antagonists

机译:G蛋白偶联受体的基于结构的支架再利用:腺苷衍生物转化为5HT(2B)/ 5HT(2C)5-羟色胺受体拮抗剂

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摘要

Adenosine derivatives developed to activate adenosine receptors (ARs) revealed micromolar activity at serotonin 5HT(2B) and 5HT(2C) receptors (5HTRs). We explored the structure activity relationship at 5HT(2)Rs and modeled receptor interactions in order to optimize affinity and simultaneously reduce AR affinity. Depending on N-6 substitution, small 5'-alkylamide modification maintained 5HT(2B)R affinity, which was enhanced upon ribose substitution with rigid bicyclo [3.1.0]-hexane (North (N)-methanocarba), e.g., N-6-dicydopropylmethyl 4'-CH2OH derivative 14 (K-i 11 nM). 5'-Methylamide 23 was 170-fold selective as antagonist for 5HT(2B)R vs 5HT(2C)R. 5'-Methyl 25 and ethyl 26 esters potently antagonized 5HT(2)Rs with moderate selectivity in comparison to ARs; related 6-N,N-dimethylamino analogue 30 was 5HT(2)R-selective. 5' position flexibility of substitution was indicated in 5HT(2B)R docking. Both 5'-ester and 5'-amide derivatives displayed in vivo t(1/2) of 3-4 h. Thus, we used G protein-coupled receptor modeling to repurpose nucleoside scaffolds in favor of binding at nonpurine receptors as novel 5HT(2)R antagonists, with potential for cardioprotection, liver protection, or central nervous system activity.
机译:开发来激活腺苷受体(ARs)的腺苷衍生物显示出对5-羟色胺5HT(2B)和5HT(2C)受体(5HTRs)的微摩尔活性。我们探索了5HT(2)Rs的结构活性关系并模拟了受体相互作用,以优化亲和力并同时降低AR亲和力。取决于N-6取代,小的5'-烷基酰胺修饰可保持5HT(2B)R亲和力,当用刚性双环[3.1.0]-己烷(北(N)-甲氨基甲酸)例如N- 6-二二丙基丙基甲基4'-CH2OH衍生物14(Ki 11 nM)。 5'-甲基酰胺23作为5HT(2B)R相对于5HT(2C)R的拮抗剂的选择性是170倍。 5'-甲基25和26的乙基酯强烈拮抗5HT(2)Rs,与ARs相比具有中等选择性;相关的6-N,N-二甲基氨基类似物30是5HT(2)R选择性的。 5HT(2B)R对接表明了5'位置替代的灵活性。 5'-酯和5'-酰胺衍生物在体内的t(1/2)均显示3-4小时。因此,我们使用G蛋白偶联的受体模型来重新利用核苷支架,以便在非嘌呤受体上结合作为新型5HT(2)R拮抗剂,具有心脏保护,肝脏保护或中枢神经系统活性的潜力。

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