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RFamide 肽的结构-活性研究揭示了神经肽 FF1 和 FF2 受体的亚型选择性激活。

Structure-activity studies of RFamide peptides reveal subtype-selective activation of neuropeptide FF1 and FF2 receptors.

机构信息

Institute of Biochemistry, Faculty of Biosciences, Pharmacy and Psychology, Leipzig University, Brüderstraße 34, 04103 Leipzig, Germany.

出版信息

ChemMedChem. 2011 Jun 6;6(6):1081-93. doi: 10.1002/cmdc.201100089. Epub 2011 May 4.

Abstract

Selectivity is a major issue in closely related multiligand/multireceptor systems. In this study we investigated the RFamide systems of hNPFF₁R and hNPFF₂R that bind the endogenous peptide hormones NPFF, NPAF, NPVF, and NPSF. By use of a systematic approach, we characterized the role of the C-terminal dipeptide with respect to agonistic properties using synthesized [Xaa 7]NPFF and [Xaa 8]NPFF analogues. We were able to identify only slight differences in potency upon changing the position of Arg 7, as all modifications resulted in identical behavior at the NPFF₁R and NPFF₂R. However, the C-terminal Phe 8 was able to be replaced by Trp or His with only a minor loss in potency at the NPFF₂R relative to the NPFF₁R. Analogues with shorter side chains, such as α-amino-4-guanidino butyric acid ([Agb 7]NPFF) or phenylglycine ([Phg 8]NPFF), decreased efficacy for the NPFF₁ R to 25-31 % of the maximal response, suggesting that these agonist-receptor complexes are more susceptible to structural modifications. In contrast, mutations to the conserved Asp 6.59 residue in the third extracellular loop of both receptors revealed a higher sensitivity toward the hNPFF₂R receptor than toward hNPFF₁R. These data provide new insight into the subtype-specific agonistic activation of the NPFF₁ and NPFF(2) receptors that are necessary for the development of selective agonists.

摘要

选择性是紧密相关的多配体/多受体系统中的一个主要问题。在这项研究中,我们研究了 hNPFF₁R 和 hNPFF₂R 的 RFamide 系统,它们结合内源性肽激素 NPFF、NPAF、NPVF 和 NPSF。通过系统的方法,我们使用合成的 [Xaa 7]NPFF 和 [Xaa 8]NPFF 类似物,研究了 C 末端二肽对激动性质的作用。我们发现,当改变 Arg7 的位置时,其效力只有微小的差异,因为所有修饰在 NPFF₁R 和 NPFF₂R 上均表现出相同的行为。然而,C 末端的 Phe8 可以被 Trp 或 His 取代,而在 NPFF₂R 相对于 NPFF₁R 的效力只有轻微的损失。侧链较短的类似物,如α-氨基-4-胍基丁酸([Agb7]NPFF)或苯丙氨酸([Phg8]NPFF),使 NPFF₁R 的效力降低至最大反应的 25-31%,这表明这些激动剂-受体复合物更容易受到结构修饰的影响。相比之下,在两个受体的第三个细胞外环中保守的 Asp6.59 残基的突变对 hNPFF₂R 受体的敏感性高于 hNPFF₁R。这些数据为 NPFF₁ 和 NPFF(2)受体的亚型特异性激动剂激活提供了新的见解,这对于开发选择性激动剂是必要的。

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