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天然δ-阿片受体激动剂皮肤脑啡肽的受体亲和力和选择性的分子决定因素

Molecular determinants of receptor affinity and selectivity of the natural delta-opioid agonist, dermenkephalin.

作者信息

Sagan S, Amiche M, Delfour A, Mor A, Camus A, Nicolas P

机构信息

Laboratoire de Bioactivation des Peptides, Institut Jacques Monod, Université Paris 7, France.

出版信息

J Biol Chem. 1989 Oct 15;264(29):17100-6.

PMID:2551895
Abstract

Processing of the polyprotein precursor pro-dermorphin generates two distantly related D-amino acid-containing peptides, dermorphin and dermenkephalin, which are among the most selective high affinity agonists described, respectively, for the mu- and delta-opioid receptors. Dermenkephalin, Tyr-D-Met-Phe-His-Leu-Met-Asp-NH2, is a linear, potentially flexible peptide devoid of structural homology with either enkephalins, endorphins, or dynorphins and, as such, represents a useful tool for identifying determinants of high affinity and selective binding of opioids to the delta-receptor. A series of selected dermenkephalin analogs and homologs was investigated for affinity at the mu- and delta-sites in the brain. Whereas dermenkephalin has high affinity and specificity for the delta-opioid receptors, its tetrapeptide amino end, dermenkephalin-[1-4]-NH2 binds almost exclusively at the mu-receptors. Dermorphin, Tyr-D-Ala-Phe-Gly-Tyr-Pro-Ser-NH2, is only marginally more selective for the u-sites than is dermenkephalin-[1-4]-NH2. Using dermorphin-dermenkephalin peptide hybrids and C-terminal deletion analogs of dermenkephalin, we showed the critical role that the C-terminal residues Met6 and Asp7 play in specifying correct addressing of dermenkephalin toward delta-receptors. The potent mu-deteminant located within the amino end of dermenkephalin is over-whelmed by the powerful delta-directing ability of the carboxy end. The negatively charged side chain of Asp7 makes a significant contribution to the delta-addressing ability of the C-terminal region, a finding consistent with Schwyzer's membrane selection model (Schwyzer, R. (1986) Biochemistry 25, 6335-6342). The Leu residue in position 5 and D-configuration about the alpha-carbon of Met2 were found to be of crucial importance for high affinity binding to delta-receptors. Whereas the Met residue in position 6 in dermenkephalin could safely be oxidized or replaced with D-Met, oxidation of Met2 led to deleterious effects, this analog being 1/100 as potent as dermenkephalin at delta-sites. Overall, the data collected demonstrate that highest levels of selectivity and affinity for the delta-opioid receptors can be achieved with small-sized, potentially flexible, linear peptides and further support the model according to which, in addition to optimum accommodation at the receptor, selection for delta-receptors is reduced by the effective positive charge of the molecule. Dermenkephalin may provide a starting point for the design of agonists and antagonists with nearly total specificity for the delta-sites. Such pharmacological agents could be used to explore the ill-defined physiological role and behavioral actions conveyed by delta-opioid receptors.

摘要

多蛋白前体原皮啡肽的加工产生了两种远缘相关的含D-氨基酸的肽,即皮啡肽和脑啡肽,它们分别是所描述的对μ-和δ-阿片受体最具选择性的高亲和力激动剂。脑啡肽,Tyr-D-Met-Phe-His-Leu-Met-Asp-NH2,是一种线性的、可能具有柔性的肽,与脑啡肽、内啡肽或强啡肽均无结构同源性,因此,它是鉴定阿片类药物与δ-受体高亲和力和选择性结合决定因素的有用工具。研究了一系列选定的脑啡肽类似物和同系物对脑内μ-和δ-位点的亲和力。虽然脑啡肽对δ-阿片受体具有高亲和力和特异性,但其四肽氨基末端,脑啡肽-[1-4]-NH2几乎只与μ-受体结合。皮啡肽,Tyr-D-Ala-Phe-Gly-Tyr-Pro-Ser-NH2,对μ-位点的选择性仅略高于脑啡肽-[1-4]-NH2。使用皮啡肽-脑啡肽肽杂合体和脑啡肽的C末端缺失类似物,我们证明了C末端残基Met6和Asp7在确定脑啡肽对δ-受体的正确靶向中所起的关键作用。位于脑啡肽氨基末端的强效μ-决定簇被羧基末端强大的δ-导向能力所掩盖。Asp7带负电荷的侧链对C末端区域的δ-靶向能力有重要贡献,这一发现与施维泽的膜选择模型一致(施维泽,R.(1986年)《生物化学》25,6335-6342)。发现第5位的Leu残基和Met2的α-碳上的D-构型对于与δ-受体的高亲和力结合至关重要。虽然脑啡肽第6位的Met残基可以安全地被氧化或被D-Met取代,但Met2的氧化会产生有害影响,该类似物在δ-位点的效力仅为脑啡肽的1/100。总体而言收集到的数据表明,小型的、可能具有柔性地线性肽可以实现对δ-阿片受体的最高水平的选择性和亲和力,并进一步支持了这样的模型,即除了在受体处的最佳适配外,分子的有效正电荷会降低对δ-受体的选择。脑啡肽可能为设计对δ-位点几乎具有完全特异性的激动剂和拮抗剂提供一个起点。这样的药物制剂可用于探索由δ-阿片受体传递的尚不明确的生理作用和行为效应。

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