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首页> 外文期刊>Journal of Medicinal Chemistry >Structure-Activity Relationship Studies on a Macrocyclic Agouti-Related Protein (AGRP) Scaffold Reveal Agouti Signaling Protein (ASP) Residue Substitutions Maintain Melanocortin-4 Receptor Antagonist Potency and Result in Inverse Agonist Pharmacology at the Melanocortin-5 Receptor
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Structure-Activity Relationship Studies on a Macrocyclic Agouti-Related Protein (AGRP) Scaffold Reveal Agouti Signaling Protein (ASP) Residue Substitutions Maintain Melanocortin-4 Receptor Antagonist Potency and Result in Inverse Agonist Pharmacology at the Melanocortin-5 Receptor

机译:宏环agouti相关蛋白(AgrP)支架的结构 - 活性关系研究显示agouti信号蛋白(ASP)残留物拮抗剂拮抗剂效力维持Melanocortin-4受体拮抗剂效力并导致Melanocortin-5受体的反向激动剂药理学

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摘要

The melanocortin system consists of five reported receptors, agonists from the proopiomelanocortin gene transcript, and two antagonists, agouti-signaling protein (ASP) and agouti-related protein (AGRP). For both ASP and AGRP, the hypothesized Arg-Phe-Phe pharmacophores are on exposed beta-hairpin loops. In this study, the Asn and Ala positions of a reported AGRP macrocyclic scaffold (c[Pro-Arg-Phe-Phe-Asn-Ala-Phe-DPro]) were explored with 14-compound and 8-compound libraries, respectively, to generate more potent, selective melanocortin receptor antagonists. Substituting diaminopropionic acid (Dap), DDap, and His at the Asn position yielded potent MC4R ligands, while replacing Ala with Ser maintained MC4R potency. Since these substitutions correlate to ASP loop residues, an additional Phe to Ala substitution was synthesized and observed to maintain MC4R potency. Seventeen compounds also possessed inverse agonist activity at the MCSR, the first report of this pharmacology. These findings are useful in developing molecular probes to study negative energy balance conditions and unidentified functions of the MCSR.
机译:Melanocortin系统由五个报告的受体组成,来自ProopioMelanocortin基因转录物的激动剂,以及两个拮抗剂,agouti-信号蛋白(Asp)和agouti相关蛋白(Agrp)。对于ASP和AGRP,假设的arg-Phe-Phe药程长在暴露的β-发夹环上。在本研究中,分别探讨了报告的AgrP大环菌支架(C [PRO-ARG-PHE-ASN-ALA-ALA-PHE-ALA-ALA-ALA-PHE-PHE-ALA-PHE-ALA-ALA-PHE-ALA-ALA-PHE-ALA-PHE-ALA-ALA-PHE-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-ALA-PHE-DPRO]。产生更有效的选择性素质素受体拮抗剂。取代二氨基丙酸(DAP),DDAP和他在ASN位置产生有效的MC4R配体,同时用SER保持MC4R效力替换ALA。由于这些取代与ASP回路残留物相关,因此合成并观察到Ala取代的另外的pHE以维持MC4R效力。十七种化合物还具有本药理学的第一个报告的MCSR上的逆激动剂活动。这些发现对于开发分子探针以研究负能量平衡条件和MCSR的未识别功能。

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