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新型神经介素B受体拮抗剂——取代生长抑素类似物的发现

Discovery of a novel class of neuromedin B receptor antagonists, substituted somatostatin analogues.

作者信息

Orbuch M, Taylor J E, Coy D H, Mrozinski J E, Mantey S A, Battey J F, Moreau J P, Jensen R T

机构信息

Digestive Diseases Branch, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Mol Pharmacol. 1993 Oct;44(4):841-50.

PMID:7901752
Abstract

Bombesin-related peptides have widespread activities in the central nervous system and peripheral tissues. Recent studies show two subtypes of receptors; a gastrin-releasing peptide (GRP) receptor subtype and a neuromedin B (NMB) receptor subtype exist. In contrast to the GRP receptor, no antagonists exist for the NMB receptor. In the present study we report that certain somatostatin (SS) octapeptide analogues function as selective NMB receptor antagonists. The most potent analogue, D-Nal-Cys-Tyr-D-Trp-Lys-Val-Cys-Nal-NH2, inhibited binding of 125I-[D-Tyr degree]NMB to NMB receptor-transfected 3T3 cells and C6 cells. This analogue had 100-fold lower affinity for GRP receptors. Structure-function studies were performed by synthesizing 18 structurally related SS octapeptide analogues; each of these analogues, but not native SS-14 or SS-28, also inhibited binding to NMB receptors. The stereochemistry at positions 1, 2, 7, and 8, the hydrophobicity and ring size of the substitution in positions 1, 3, and 4, and the basicity of the group in position 5 were all important in determining NMB receptor affinity. No SS octapeptide analogue increased [3H]inositol phosphates in NMB receptor-transfected cells; however, each analogue inhibited NMB-stimulated increases. The most potent analogue, D-Nal-Cys-Tyr-D-Trp-Lys-Val-Cys-Nal-NH2, caused a parallel rightward shift of the NMB dose-response curve, the Schild plot slope was not significantly different from unity, and the affinity was 230 nM. SS octapeptide analogues also interacted with SS receptors and mu-opioid receptors; however, there was no correlation between the affinities of the analogues for these receptors and their affinities for NMB receptors, demonstrating that these activities can be separated. The results demonstrate for the first time a class of antagonists with > 100-fold selectivity for NMB versus GRP receptors. Because the structural requirements for determining NMB, SS, and mu-opioid receptor activity differ, it is likely that highly selective, specific, high affinity NMB receptor antagonists can now be developed that will be useful in defining the role of NMB in various physiological processes.

摘要

蛙皮素相关肽在中枢神经系统和外周组织中具有广泛的活性。最近的研究表明存在两种受体亚型;即胃泌素释放肽(GRP)受体亚型和神经介素B(NMB)受体亚型。与GRP受体不同,NMB受体不存在拮抗剂。在本研究中,我们报告某些生长抑素(SS)八肽类似物可作为选择性NMB受体拮抗剂发挥作用。最有效的类似物D-Nal-Cys-Tyr-D-Trp-Lys-Val-Cys-Nal-NH2可抑制125I-[D-Tyr0]NMB与转染了NMB受体的3T3细胞和C6细胞的结合。该类似物对GRP受体的亲和力低100倍。通过合成18种结构相关的SS八肽类似物进行了结构-功能研究;这些类似物中的每一种,但天然的SS-14或SS-28除外,也都抑制与NMB受体的结合。第1、2、7和8位的立体化学、第1、3和4位取代基的疏水性和环大小以及第5位基团的碱性在确定NMB受体亲和力方面都很重要。没有SS八肽类似物能增加转染了NMB受体的细胞中的[3H]肌醇磷酸;然而,每种类似物都抑制NMB刺激的增加。最有效的类似物D-Nal-Cys-Tyr-D-Trp-Lys-Val-Cys-Nal-NH2使NMB剂量反应曲线平行右移,Schild图斜率与1无显著差异,亲和力为230 nM。SS八肽类似物也与SS受体和μ-阿片受体相互作用;然而,类似物对这些受体的亲和力与其对NMB受体的亲和力之间没有相关性,这表明这些活性可以分开。结果首次证明了一类对NMB受体与GRP受体具有>100倍选择性的拮抗剂。由于确定NMB、SS和μ-阿片受体活性的结构要求不同,现在很可能能够开发出高选择性、特异性、高亲和力的NMB受体拮抗剂,这将有助于确定NMB在各种生理过程中的作用。

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