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小鼠黑皮质素受体上黑皮质素四肽Ac-His-DPhe-Arg-Trp-NH₂的构效关系:第2部分苯丙氨酸位置的修饰

Structure-activity relationships of the melanocortin tetrapeptide Ac-His-DPhe-Arg-Trp-NH(2) at the mouse melanocortin receptors: part 2 modifications at the Phe position.

作者信息

Holder Jerry Ryan, Bauzo Rayna M, Xiang Zhimin, Haskell-Luevano Carrie

机构信息

University of Florida, Department of Medicinal Chemistry, P.O. Box 100485, Gainesville, FL 32610-0485, USA.

出版信息

J Med Chem. 2002 Jul 4;45(14):3073-81. doi: 10.1021/jm010524p.

Abstract

The melanocortin pathway is an important participant in skin pigmentation, steroidogenesis, obesity, energy homeostasis and exocrine gland function. The centrally located melanocortin-3 and melanocortin-4 receptors (MC3R, MC4R) are involved in the metabolic and food intake aspects of energy homeostasis and are stimulated by melanocortin agonists such as alpha-melanocyte stimulation hormone (alpha-MSH). The melanocortin agonists contain the putative message sequence "His-Phe-Arg-Trp," and it has been well-documented that inversion of chirality of the Phe to DPhe results in a dramatic increase in melanocortin receptor potency. Herein, we report a tetrapeptide library, based upon the template Ac-His-DPhe-Arg-Trp-NH(2), consisting of 26 members that have been modified at the DPhe(7) position (alpha-MSH numbering) and pharmacologically characterized for agonist and antagonist activity at the mouse melanocortin receptors MC1R, MC3R, MC4R, and MC5R. The most notable results of this study include the identification of the tetrapeptide Ac-His-(pI)DPhe-Arg-Trp-NH(2) that is a full nanomolar agonist at the mMC1 and mMC5 receptors, a mMC3R partial agonist with potent antagonist activity (pA(2) = 7.25, K(i) = 56 nM) and, but unexpectedly, is a potent agonist at the mMC4R (EC(50) = 25 nM). This ligand possesses novel melanocortin receptor pharmacology, as compared to previously reported peptides, and is potentially useful for in vivo studies to differentiate MC3R vs MC4R physiological roles in animal models, such as primates, where "knockout" animals are not viable options. The DNal(2') substitution for DPhe resulted in a mMC3R partial agonist with antagonist activity (pA(2) = 6.5, K(i) = 295 nM) and a mMC4R (pA(2) = 7.8, K(i) = 17 nM) antagonist possessing 60- and 425-fold decreased potency, respectively, as compared with SHU9119 at these receptors. Examination of this DNal(2')-containing tetrapeptide at the F254S and F259S mutant mMC4Rs resulted in agonist activity of this mMC4R tetrapeptide antagonist, similar to that observed for the SHU9119 peptide, supporting our previously proposed hypothesis that the Phe 254 and 259 transmembrane six receptor residues are important for differentiating melanocortin sequence-based MC4R antagonists vs the agouti-related protein (AGRP) sequence-based antagonists.

摘要

黑皮质素信号通路是皮肤色素沉着、类固醇生成、肥胖、能量稳态和外分泌腺功能的重要参与者。位于中枢的黑皮质素-3和黑皮质素-4受体(MC3R、MC4R)参与能量稳态的代谢和食物摄入方面,并受到黑皮质素激动剂如α-黑素细胞刺激激素(α-MSH)的刺激。黑皮质素激动剂包含假定的信息序列“His-Phe-Arg-Trp”,并且有充分的文献记载,将Phe的手性反转成DPhe会导致黑皮质素受体效力显著增加。在此,我们报告了一个基于模板Ac-His-DPhe-Arg-Trp-NH₂的四肽文库,该文库由26个成员组成,这些成员在DPhe⁷位置(α-MSH编号)进行了修饰,并对其在小鼠黑皮质素受体MC1R、MC3R、MC4R和MC5R上的激动剂和拮抗剂活性进行了药理学表征。这项研究最显著的结果包括鉴定出四肽Ac-His-(pI)DPhe-Arg-Trp-NH₂,它是mMC1和mMC5受体的全纳摩尔激动剂,是mMC3R的部分激动剂且具有强效拮抗剂活性(pA₂ = 7.25,Kᵢ = 56 nM),但出乎意料的是,它也是mMC4R的强效激动剂(EC₅₀ = 25 nM)。与先前报道的肽相比,该配体具有新颖的黑皮质素受体药理学特性,并且可能有助于在体内研究中区分MC3R和MC4R在动物模型(如灵长类动物)中的生理作用,在这些模型中“基因敲除”动物不是可行的选择。用DNal(2')替代DPhe导致产生一种具有拮抗剂活性的mMC3R部分激动剂(pA₂ = 6.5,Kᵢ = 295 nM)和一种mMC4R拮抗剂(pA₂ = 7.8,Kᵢ = 17 nM),与这些受体上的SHU9119相比,其效力分别降低了60倍和425倍。在F254S和F259S突变型mMC4R上检测这种含DNal(2')的四肽,发现该mMC4R四肽拮抗剂具有激动剂活性,类似于SHU9119肽所观察到的,这支持了我们先前提出的假设,即跨膜六区的Phe 254和259受体残基对于区分基于黑皮质素序列的MC4R拮抗剂和基于刺鼠相关蛋白(AGRP)序列的拮抗剂很重要。

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