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在缺乏μ受体的小鼠中,δ阿片受体的活性部分降低,而κ受体的活性则保持不变。

Activity of the delta-opioid receptor is partially reduced, whereas activity of the kappa-receptor is maintained in mice lacking the mu-receptor.

作者信息

Matthes H W, Smadja C, Valverde O, Vonesch J L, Foutz A S, Boudinot E, Denavit-Saubié M, Severini C, Negri L, Roques B P, Maldonado R, Kieffer B L

机构信息

Unité Propre de Recherche 9050 Centre National de la Recherche Scientifique, Ecole Supérieure de Biotechnologie de Strasbourg Université Louis Pasteur, F-67400 Illkirch, Strasbourg, France.

出版信息

J Neurosci. 1998 Sep 15;18(18):7285-95. doi: 10.1523/JNEUROSCI.18-18-07285.1998.

Abstract

Previous pharmacological studies have indicated the possible existence of functional interactions between mu-, delta- and kappa-opioid receptors in the CNS. We have investigated this issue using a genetic approach. Here we describe in vitro and in vivo functional activity of delta- and kappa-opioid receptors in mice lacking the mu-opioid receptor (MOR). Measurements of agonist-induced [35S]GTPgammaS binding and adenylyl cyclase inhibition showed that functional coupling of delta- and kappa-receptors to G-proteins is preserved in the brain of mutant mice. In the mouse vas deferens bioassay, deltorphin II and cyclic[D-penicillamine2, D-penicillamine5] enkephalin exhibited similar potency to inhibit smooth muscle contraction in both wild-type and MOR -/- mice. delta-Analgesia induced by deltorphin II was slightly diminished in mutant mice, when the tail flick test was used. Deltorphin II strongly reduced the respiratory frequency in wild-type mice but not in MOR -/- mice. Analgesic and respiratory responses produced by the selective kappa-agonist U-50,488H were unchanged in MOR-deficient mice. In conclusion, the preservation of delta- and kappa-receptor signaling properties in mice lacking mu-receptors provides no evidence for opioid receptor cross-talk at the cellular level. Intact antinociceptive and respiratory responses to the kappa-agonist further suggest that the kappa-receptor mainly acts independently from the mu-receptor in vivo. Reduced delta-analgesia and the absence of delta-respiratory depression in MOR-deficient mice together indicate that functional interactions may take place between mu-receptors and central delta-receptors in specific neuronal pathways.

摘要

以往的药理学研究表明,中枢神经系统中μ-、δ-和κ-阿片受体之间可能存在功能相互作用。我们采用遗传学方法对这一问题进行了研究。在此,我们描述了缺乏μ-阿片受体(MOR)的小鼠体内δ-和κ-阿片受体的体外和体内功能活性。激动剂诱导的[35S]GTPγS结合和腺苷酸环化酶抑制的测量结果表明,δ-和κ-受体与G蛋白的功能偶联在突变小鼠脑中得以保留。在小鼠输精管生物测定中,强啡肽II和环[D-青霉胺2,D-青霉胺5]脑啡肽在野生型和MOR -/-小鼠中抑制平滑肌收缩的效力相似。当使用甩尾试验时,强啡肽II诱导的δ-镇痛作用在突变小鼠中略有减弱。强啡肽II能强烈降低野生型小鼠的呼吸频率,但对MOR -/-小鼠无效。选择性κ-激动剂U-50,488H产生的镇痛和呼吸反应在MOR缺陷小鼠中未发生变化。总之,缺乏μ-受体的小鼠中δ-和κ-受体信号特性的保留,并未提供细胞水平上阿片受体相互作用的证据。对κ-激动剂完整的抗伤害感受和呼吸反应进一步表明,κ-受体在体内主要独立于μ-受体发挥作用。MOR缺陷小鼠中δ-镇痛作用减弱以及δ-呼吸抑制缺失共同表明,μ-受体与中枢δ-受体可能在特定神经元通路中发生功能相互作用。

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