Holder Jerry Ryan, Bauzo Rayna M, Xiang Zhimin, Haskell-Luevano Carrie
Department of Medicinal Chemistry, University of Florida, Gainesville, FL 32610, USA.
J Med Chem. 2002 Jun 20;45(13):2801-10. doi: 10.1021/jm0104872.
The melanocortin pathway is an important participant in obesity and energy homeostasis. 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 on the template Ac-His-DPhe-Arg-Trp-NH(2), consisting of 17 members that have been modified at the His(6) position (alpha-MSH numbering) and pharmacologically characterized for agonist activity at the mouse melanocortin receptors MC1R, MC3R, MC4R, and MC5R. These studies provide further experimental evidence that the His(6) position can determine MC4R versus MC3R agonist selectivity and that chemically nonreactive side chains may be substituted for the imidazole ring (generally needs to be side chain protected in synthetic schemes) in the design of MC4R-selective, small-molecule, non-peptide agonists. Specifically, the tetrapeptide containing the amino-2-naphthylcarboxylic acid (Anc) amino acid at the His position resulted in a potent agonist at the mMC4R (EC(50) = 21 nM), was a weak mMC3R micromolar antagonist (pA(2) = 5.6, K(i) = 2.5 microM), and possessed >4700-fold agonist selectivity for the MC4R versus the MC3R. Substitution of the His(6) amino acid in the tetrapeptide template by the Phe, Anc, 3-(2-thienyl)alanine (2Thi), and 3-(4-pyridinyl)alanine (4-Pal) resulted in equipotency or only up to a 7-fold decrease in potency, compared to the His(6)-containing tetrapeptide at the mMC4R, demonstrating that these amino acid side chains may be substituted for the imidazole in the design of MC4R-selective non-peptide molecules.
黑皮质素途径是肥胖和能量稳态中的重要参与者。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17个成员组成,这些成员在His(6)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上的激动剂活性进行了药理学表征。这些研究提供了进一步的实验证据,表明His(6)位置可以决定MC4R与MC3R激动剂的选择性,并且在设计MC4R选择性的小分子非肽激动剂时,化学性质不活泼的侧链可以替代咪唑环(在合成方案中通常需要对侧链进行保护)。具体而言,在His位置含有氨基-2-萘基羧酸(Anc)氨基酸的四肽在小鼠MC4R上是一种强效激动剂(EC₅₀ = 21 nM),是一种对小鼠MC3R的微摩尔级弱拮抗剂(pA₂ = 5.6,Kᵢ = 2.5 μM),并且对MC4R与MC3R的激动剂选择性大于4700倍。与在小鼠MC4R上含His(6)的四肽相比,用Phe、Anc、3-(2-噻吩基)丙氨酸(2Thi)和3-(4-吡啶基)丙氨酸(4-Pal)取代四肽模板中的His(6)氨基酸导致效力相当或仅降低7倍,这表明在设计MC4R选择性非肽分子时,这些氨基酸侧链可以替代咪唑。