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Design Synthesis and Biological Evaluation of New Cyclic Melanotropin Peptide Analogues Selective for the Human Melanocortin-4 Receptor

机译:新型环的设计合成及生物学评价 对人类Melanocortin-4选择性的Melanotropin肽类似物 受体

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摘要

Intensive efforts have been made to develop potent and selective ligands for certain human melanocortin receptors as possible treatments for obesity and sexual dysfunction due to the role of these receptors in feeding behavior, energy homeostasis, sexual function, etc. A number of novel α-MSH analogues were designed and synthesized primarily on the basis of our previous MTII NMR structure. In these peptide analogues, a disulfide or lactam bridge between residues at positions 5 and 8 was used as a conformational constraint to enhance the β-turn spanning His6 and d-Phe7, while the pharmacophore group in Arg8 was mimicked via Nα-alkylation of residues 8 or 9 with the guanidinylbutyl group. Biological assays for binding affinities and adenylate cyclase activities for the hMC1R, hMC3R, hMC4R, and hMC5R showed that three analogues have good binding affinity for the hMC4R (0.7–4.1 nM), but have no binding affinity up to 10 μM at the other three melanocortin receptors. Interestingly, the three hMC4R selective analogues display only 50% binding efficiency, suggesting there is allosteric modulation of the melanocortin-4 receptor. These analogues were found to act as antagonists of the hMC4R. This result represents a discovery of very selective peptide-based antagonists for the hMC4R. The high selectivity may be due to the strong conformational constraint via ring contraction as compared to MTII, and the rigid conformation preferred by these new ligands allows them to recognize only the hMC4R, but not to activate the second messenger. The MTII NMR structure-based design thus not only examined the structural model of melanocortin ligands, but also yielded new biologically unique α-MSH analogues.
机译:由于这些受体在进食行为,能量稳态,性功能等方面的作用,人们已经在努力开发某些人黑皮质素受体的有效和选择性配体,作为肥胖和性功能障碍的可能治疗方法。许多新型α-MSH主要根据我们以前的MTII NMR结构设计和合成类似物。在这些肽类似物中,第5位和第8位残基之间的二硫键或内酰胺桥被用作构象约束,以增强跨越His 6 和d-Phe 7 ,而Arg 8 中的药效基团是通过N'sup>α用胍基丁基丁基进行残基8或9的烷基化而模拟的。对hMC1R,hMC3R,hMC4R和hMC5R的结合亲和力和腺苷酸环化酶活性的生物学分析表明,三个类似物对hMC4R具有良好的结合亲和力(0.7-4.1 nM),而对其他三个不具有高达10μM的结合亲和力黑皮质素受体。有趣的是,三种hMC4R选择性类似物仅表现出50%的结合 效率,表明黑素皮质素-4的变构调节 受体。发现这些类似物可作为抗氧化剂的拮抗剂。 hMC4R。这个结果代表了非常有选择性的发现 hMC4R的基于肽的拮抗剂。高选择性 可能是由于通过环收缩的强烈构象约束 与MTII相比,这些新的配体更喜欢刚性构象 使他们只能识别hMC4R,而不能激活第二个 信使。因此,基于MTII NMR结构的设计不仅检查了 黑皮质素配体的结构模型,但也产生了新的生物学 独特的α-MSH类似物。

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