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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Ligand-directed trafficking of the delta-opioid receptor in vivo: two paths toward analgesic tolerance.
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Ligand-directed trafficking of the delta-opioid receptor in vivo: two paths toward analgesic tolerance.

机译:体内δ-阿片受体的配体导定量贩运:两种抗镇痛耐受性的途径。

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摘要

delta-Opioid receptors are G-protein-coupled receptors that regulate nociceptive and emotional responses. It has been well established that distinct agonists acting at the same G-protein-coupled receptor can engage different signaling or regulatory responses. This concept, known as biased agonism, has important biological and therapeutic implications. Ligand-biased responses are well described in cellular models, however, demonstrating the physiological relevance of biased agonism in vivo remains a major challenge. The aim of this study was to investigate the long-term consequences of ligand-biased trafficking of the delta-opioid receptor, at both the cellular and behavioral level. We used delta agonists with similar binding and analgesic properties, but high [SNC80 ((+)-4-[(alphaR)-alpha-((2S,5R)-4-allyl-2,5-dimethyl-1-piperazinyl)-3-methoxybenz yl]-N,N-diethylbenzamide)]- or low [ARM390 (N,N-diethyl-4-(phenyl-piperidin-4-ylidenemethyl)-benzamide)]-internalization potencies. As we found previously, a single SNC80-but not ARM390-administration triggered acute desensitization of the analgesic response in mice. However, daily injections of either compound over 5 d produced full analgesic tolerance. SNC80-tolerant animals showed widespread receptor downregulation, and tolerance to analgesic, locomotor and anxiolytic effects of the agonist. Hence, internalization-dependent tolerance developed, as a result of generalized receptor degradation. In contrast, ARM390-tolerant mice showed intact receptor expression, but delta-opioid receptor coupling to Ca(2)+ channels was abolished in dorsal root ganglia. Concomitantly, tolerance developed for agonist-induced analgesia, but not locomotor or anxiolytic responses. Therefore, internalization-independent tolerance was produced by anatomically restricted adaptations leading to pain-specific tolerance. Hence, ligand-directed receptor trafficking of the delta-opioid receptor engages distinct adaptive responses, and this study reveals a novel aspect of biased agonism in vivo.
机译:Δ-阿片受体是G-蛋白偶联受体调节感受伤害和情绪反应。已经公认的是在相同的G-蛋白偶联受体发挥作用不同激动剂可接合不同的信令或监管响应。这个概念,被称为偏激动,具有重要的生物和治疗的意义。配体偏置响应以及在细胞模型中进行了说明,证明在体内偏置激动作用的生理学相关性仍是一个重大的挑战。这项研究的目的是调查三角洲阿片受体的配体偏置贩卖的长期后果,在细胞和行为水平两者。我们使用δ激动剂具有类似结合和止痛特性,但高[SNC80((+) - 4 - [(alphaR)-α - ((2S,5R)-4-烯丙基-2,5-二甲基-1-哌嗪基) -3- methoxybenz基] -N,N-二乙基苯甲酰胺)] - 或低[ARM390(N,N-二乙基-4-(苯基 - 哌啶-4-亚基甲基) - 苯甲酰胺)] - 内在效力。正如我们以前发现,单SNC80,但不ARM390的管理引发小鼠的止痛反应的急性脱敏。然而,在5 d任一化合物的每日注射产生充分镇痛耐受性。 SNC80容错动物表现出广泛的受体下调,忍到镇痛,运动和激动剂的抗焦虑作用。因此,内在化相关的容差的发展,为全身受体的退化的结果。与此相反,ARM390耐受小鼠显示完整受体的表达,但Δ-阿片受体耦合对于Ca(2)+通道在背根神经节废除。与此同时,公差激动剂镇痛作用的发展,但不运动或抗焦虑响应。因此,内化无关的耐受性通过解剖学限制适应导致疼痛特异性耐受性产生。 Δ-阿片受体。因此,配体引导受体运输接合不同的适应性反应,并且该研究揭示了在体内偏置激动的一个新的方面。

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