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小鼠海马结构中神经肽Y相关肽与σ受体之间体内相互作用的证据。

Evidence for in vivo interactions between neuropeptide Y-related peptides and sigma receptors in the mouse hippocampal formation.

作者信息

Bouchard P, Dumont Y, Fournier A, St-Pierre S, Quirion R

机构信息

Douglas Hospital Research Center, Verdun, Québec, Canada.

出版信息

J Neurosci. 1993 Sep;13(9):3926-31. doi: 10.1523/JNEUROSCI.13-09-03926.1993.

Abstract

Recently, it was proposed that neuropeptide Y (NPY) and peptide YY (PYY) could act as endogenous ligands for sigma binding sites, as both NPY and PYY competed with high affinity (nanomolar) for 3H-(+)SKF 10,047 binding sites in rat brain membrane homogenates (Roman et al., 1989). However, various laboratories failed to replicate these in vitro findings. In order to clarify this apparent discrepancy and investigate further possible interactions between NPY and sigma related sites, we evaluated the effects of NPY, PYY and homologs, as well as nonrelated peptides, on in vivo 3H-(+)SKF 10,047 binding parameters in the mouse hippocampal formation. As expected, haloperidol (2 mg/kg), a prototypical sigma receptor ligand, competed for 90% of in vivo hippocampal labeling observed following a peripheral intravenous injection of 3H-(+)SKF 10,047. Intracerebroventricular injections of 300-3000 pmol of either NPY, PYY, NPY2-36, or the Y1 agonist Leu31,Pro34-NPY inhibited significant proportions (17-35%) of haloperidol-sensitive in vivo 3H-(+)SKF 10,047 hippocampal labeling. However, a Y2 receptor agonist, NPY13-36, and nonrelated peptides such as neurotensin and vasoactive intestinal polypeptide, as well as adrenalin, failed to alter in vivo 3H-(+)SKF 10,047 hippocampal binding. It thus appears that NPY, PYY, and a selective Y1 agonist can interact in a concentration-dependent manner, with in vivo 3H-(+)SKF 10,047 labeling in the mouse hippocampal formation. This effect demonstrates selectivity as a Y2 agonist, unrelated peptides, and adrenalin failed to alter in vivo sigma labeling. This in vivo interaction may be relevant to some of the respective biological actions of NPY and sigma-related molecules.

摘要

最近,有人提出神经肽Y(NPY)和肽YY(PYY)可能作为σ结合位点的内源性配体,因为NPY和PYY在大鼠脑膜匀浆中与3H-(+)SKF 10,047结合位点具有高亲和力(纳摩尔级)竞争(Roman等人,1989年)。然而,各个实验室未能重复这些体外实验结果。为了澄清这一明显差异并进一步研究NPY与σ相关位点之间可能的相互作用,我们评估了NPY、PYY及其同系物以及无关肽对小鼠海马结构中体内3H-(+)SKF 10,047结合参数的影响。正如预期的那样,典型的σ受体配体氟哌啶醇(2 mg/kg)在经外周静脉注射3H-(+)SKF 10,047后,竞争了体内海马标记的90%。脑室内注射300 - 3000 pmol的NPY、PYY、NPY2 - 36或Y1激动剂Leu31,Pro34 - NPY可抑制体内氟哌啶醇敏感的3H-(+)SKF 10,047海马标记的显著比例(17 - 35%)。然而,Y2受体激动剂NPY13 - 36以及无关肽如神经降压素和血管活性肠多肽,以及肾上腺素,均未能改变体内3H-(+)SKF 10,047海马结合。因此,似乎NPY、PYY和选择性Y1激动剂可以以浓度依赖的方式与小鼠海马结构中的体内3H-(+)SKF 10,047标记相互作用。这种效应表现出选择性,因为Y2激动剂、无关肽和肾上腺素未能改变体内σ标记。这种体内相互作用可能与NPY和σ相关分子的一些各自的生物学作用有关。

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