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首页> 外文期刊>Journal of Molecular Endocrinology >Pharmacological characterization of a nociceptin receptor from zebrafish (Danio rerio)
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Pharmacological characterization of a nociceptin receptor from zebrafish (Danio rerio)

机译:斑马鱼(Danio rerio)伤害感受器受体的药理特性

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The nociceptin receptor (NOP) and its endogenous ligand, nociceptin/orphanin FQ (OFQ), are involved in a wide range of biological functions, such as pain, anxiety, learning, and memory. The zebrafish has been proposed as a candidate to study the in vivo effects of several drugs of abuse and to discover new pharmacological targets. We report the cloning, expression, and pharmacological characterization of a NOP receptor from zebrafish (drNOP). The full-length cDNA codes a protein of 363 residues, which shows high sequence similarity to other NOPs. Phylogenetic analysis indicates that NOPs are broadly conserved during vertebrate evolution, and that they stand for the most divergent clade of the opioid/OFQ receptor family. Expression studies have revealed that drNOP mRNA is highly expressed in the central nervous system, and low expression levels are also found in peripheral tissues such as gills, muscle, and liver. Pharmacological analysis indicates that drNOP displays specific and saturable binding for [Leucyl-3,4,5-3H]nociceptin, with a Kd=0.20±0.02 nM and a Bmax=1703±81 fmol/mg protein. [3H]Nociceptin binding is displaced by several opioid ligands such as dynorphin A (DYN A), naloxone, bremazocine, or the κ-selective antagonist nor-binaltorphimine. [35S]GTPγS stimulation studies showed that drNOP receptor is functional, as nociceptin is able to fully activate the receptor and DYN A behaves as a partial agonist (50% stimulation). Our results indicate that drNOP receptor displays mixed characteristics of both NOP and κ opioid receptors. Hence, drNOP, which has retained more of the likely ancestral features, bridges the gap between nociceptin and opiate pharmacology.
机译:伤害感受器受体(NOP)及其内源性配体伤害感受器/孤儿蛋白FQ(OFQ)涉及多种生物学功能,例如疼痛,焦虑,学习和记忆。斑马鱼已被提议作为候选药物来研究几种滥用药物的体内作用并发现新的药理学靶标。我们报告了从斑马鱼(drNOP)的NOP受体的克隆,表达和药理学表征。全长cDNA编码一个363个残基的蛋白质,与其他NOP的序列相似性很高。系统发育分析表明,NOP在脊椎动物进化过程中被广泛保守,它们代表阿片/ OFQ受体家族中最分歧的分支。表达研究表明,drNOP mRNA在中枢神经系统中高表达,在peripheral,肌肉和肝脏等周围组织中也发现低表达水平。药理分析表明,drNOP对[Leucyl-3,4,5-3H] nociceptin表现出特异性且饱和的结合,Kd = 0.20±0.02 nM,Bmax = 1703±81fmol / mg。 [3H] Nociceptin的结合被几种阿片样物质的配体取代,例如强啡肽A(DYNAP),纳洛酮,溴代咪唑嗪或κ选择拮抗剂nor-binaltorphimine。 [35S]GTPγS刺激研究表明drNOP受体具有功能,因为伤害感受肽能够完全激活该受体,而DYN A表现为部分激动剂(50%刺激)。我们的结果表明,drNOP受体同时表现出NOP和κ阿片受体的混合特征。因此,保留了更多可能的祖先特征的drNOP弥补了伤害感受素和鸦片药理学之间的鸿沟。

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