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首页> 外文期刊>The Journal of Comparative Neurology >Opioid receptor-like (ORL1) receptor distribution in the rat central nervous system: comparison of ORL1 receptor mRNA expression with (125)I-((14)Tyr)-orphanin FQ binding.
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Opioid receptor-like (ORL1) receptor distribution in the rat central nervous system: comparison of ORL1 receptor mRNA expression with (125)I-((14)Tyr)-orphanin FQ binding.

机译:类鸦片受体样(ORL1)受体在大鼠中枢神经系统中的分布:ORL1受体mRNA表达与(125)I-((14)Tyr)-orphanin FQ结合的比较。

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摘要

The recently discovered neuropeptide orphanin FQ (OFQ), and its opioid receptor-like (ORL1) receptor, exhibit structural features suggestive of the &mgr;, kappa, and delta opioid systems. The anatomic distribution of OFQ immunoreactivity and mRNA expression has been reported recently. In the present analysis, we compare the distribution of orphanin receptor mRNA expression with that of orphanin FQ binding at the ORL1 receptor in the adult rat central nervous system (CNS). By using in vitro receptor autoradiography with (125)I-[(14)Tyr]-OFQ as the radioligand, orphanin receptor binding was analyzed throughout the rat CNS. Orphanin binding sites were densest in several cortical regions, the anterior olfactory nucleus, lateral septum, ventral forebrain, several hypothalamic nuclei, hippocampal formation, basolateral and medial amygdala, central gray, pontine nuclei, interpeduncular nucleus, substantia nigra, raphe complex, locus coeruleus, vestibular nuclear complex, and the spinal cord. By using in situ hybridization, cells expressing ORL1 mRNA were most numerous throughout multiple cortical regions, the anterior olfactory nucleus, lateral septum, endopiriform nucleus, ventral forebrain, multiple hypothalamic nuclei, nucleus of the lateral olfactory tract, medial amygdala, hippocampal formation, substantia nigra, ventral tegmental area, central gray, raphe complex, locus coeruleus, multiple brainstem motor nuclei, inferior olive, deep cerebellar nuclei, vestibular nuclear complex, nucleus of the solitary tract, reticular formation, dorsal root ganglia, and spinal cord. The diffuse distribution of ORL1 mRNA and binding supports an extensive role for orphanin FQ in a multitude of CNS functions, including motor and balance control, reinforcement and reward, nociception, the stress response, sexual behavior, aggression, and autonomic control of physiologic processes. Copyright 1999 Wiley-Liss, Inc.
机译:最近发现的神经肽孤儿蛋白FQ(OFQ)及其类阿片受体样(ORL1)受体具有暗示,κ和δ类阿片系统的结构特征。最近已经报道了OFQ免疫反应性和mRNA表达的解剖分布。在目前的分析中,我们比较了成年大鼠中枢神经系统(CNS)中孤儿蛋白受体mRNA表达的分布与孤儿FQ结合在ORL1受体处的结合。通过使用体外受体放射自显影技术,以(125)I-[(14)Tyr] -OFQ作为放射性配体,对整个大鼠中枢神经系统的孤儿蛋白受体结合进行了分析。孤儿蛋白结合位点在几个皮质区域,前嗅核,外侧隔,腹侧前脑,几个下丘脑核,海马结构,基底外侧和内侧杏仁核,中央灰色,桥脑核,足突间核,黑质,黑斑,复合体,轨迹,前庭核复合体和脊髓。通过原位杂交,表达ORL1 mRNA的细胞在多个皮质区域,前嗅核,外侧隔,内膜状核,腹侧前脑,下丘脑多核,外侧嗅道核,杏仁核,海马形成,实质老黑,腹侧被盖区,中央灰色,缝线复合体,蓝斑轨迹,多脑干运动核,下橄榄,小脑深核,前庭核复合体,孤立道核,网状结构,背根神经节和脊髓。 ORL1 mRNA和结合的分散分布支持孤儿蛋白FQ在多种中枢神经系统功能中的广泛作用,包括运动和平衡控制,增强和奖赏,伤害感受,压力反应,性行为,攻击性和生理过程的自主控制。版权所有1999 Wiley-Liss,Inc.

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