Cai Minying, Mayorov Alexander V, Cabello Christopher, Stankova Magda, Trivedi Dev, Hruby Victor J
Department of Chemistry, University of Arizona, Tucson, Arizona 85721, USA.
J Med Chem. 2005 Mar 24;48(6):1839-48. doi: 10.1021/jm049579s.
To further evaluate elements that could contribute to the 3D topographical structure of gamma-MSH, we have systematically designed a group of linear gamma-MSH analogues and evaluated their biological activities: without a N-terminal acetyl, with and without a C-terminal amide, with Nle(3), with l- or d-Phe(6) or d-Nal(2')(6), and with d-Trp(8) or d-Nal(2')(8). It was found that changing the C-terminal acid in gamma-MSH to an amide and replacing Met with Nle leads to increased binding affinities at all four subtypes of melanocortin receptors (10-100 fold). Substitution of Trp(8) with d-Nal(2')(8) and Phe(6) with d-Phe(6) in gamma-MSH-NH(2) forms a selective antagonist for the hMC3R, whereas, substitution of Phe(6) with d-Nal(2')(6) and replacing Trp(8) with d-Trp(8) at gamma-MSH-NH(2) yields a selective partial agonist for the hMC1R. Finally, substitution of His(5) with Pro(5) and Trp(8) with d-Nal(2')(8) in gamma-MSH-NH(2) leads to a highly potent and selective agonist for the hMC1R. Molecular modeling showed that, at the C-terminal of Nle(3)-gamma-MSH-NH(2), there is a reverse-turn-like structure, suggesting that there might be a secondary binding site involved in ligand-receptor interaction for gamma-MSH analogues that may explain the enhanced binding affinities of the Nle(3)-gamma-MSH-NH(2) analogues. Our results indicate that increasing the hydrophobicity and replacing Phe(6) and Trp(8) with bulkier aromatic amino acid residues is very important for selectivity of alpha-MSH/gamma-MSH hybrids for hMCRs.
为了进一步评估可能有助于γ-MSH三维拓扑结构的因素,我们系统地设计了一组线性γ-MSH类似物,并评估了它们的生物活性:无N端乙酰基、有或无C端酰胺、有Nle(3)、有l-或d-Phe(6)或d-Nal(2')(6),以及有d-Trp(8)或d-Nal(2')(8)。结果发现,将γ-MSH中的C端酸改为酰胺并将Met替换为Nle会导致在所有四种黑皮质素受体亚型上的结合亲和力增加(10-100倍)。在γ-MSH-NH(2)中用d-Nal(2')(8)取代Trp(8)并用d-Phe(6)取代Phe(6)形成了hMC3R的选择性拮抗剂,而在γ-MSH-NH(2)中用d-Nal(2')(6)取代Phe(6)并用d-Trp(8)取代Trp(8)则产生了hMC1R的选择性部分激动剂。最后,在γ-MSH-NH(2)中用Pro(5)取代His(5)并用d-Nal(2')(8)取代Trp(8)导致了hMC1R的高效和选择性激动剂。分子建模显示,在Nle(3)-γ-MSH-NH(2)的C端存在一个类似反向转角的结构,这表明可能存在一个二级结合位点参与γ-MSH类似物的配体-受体相互作用,这可能解释了Nle(3)-γ-MSH-NH(2)类似物增强的结合亲和力。我们的结果表明,增加疏水性并用更大的芳香族氨基酸残基取代Phe(6)和Trp(8)对于α-MSH/γ-MSH杂合体对hMCRs的选择性非常重要。