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Facilitation of long-term potentiation and memory in mice lacking nociceptin receptors.

机译:在缺乏伤害感受器受体的小鼠中促进长期增强和记忆。

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The peptide nociceptin (also named orphanin FQ) acts in the brain to produce various pharmacological effects, including hyperalgesia and hypolocomotion. The nociceptin receptor uses guanine-nucleotide-binding proteins to mediate the inhibition of adenylyl cyclase, the activation of potassium channels and inhibition of calcium channels. It has been shown using knock-out mice that the nociceptin receptor is not required for regulation of nociceptive responses or locomotion activity, but modulates the auditory function. Here we show that mice lacking the nociceptin receptor possess greater learning ability and have better memory than control mice. Histological analysis revealed the expression of both the nociceptin precursor and the nociceptin receptor in the hippocampus, thought to take part in aspects of learning and memory. Moreover, the receptor-deficient mice showed larger long-term potentiation in the hippocampal CA1 region than control mice, without apparent changes in presynaptic or postsynaptic electrophysiological properties. These results show that the loss of the nociceptin receptor results in a gain-of-function mutation in both the memory process and the long-term potentiation mechanism in CA1, perhaps as a result of altered intracellular signal transduction systems in neurons.
机译:肽伤害感受器(也称为孤啡肽FQ)在大脑中起作用,以产生各种药理作用,包括痛觉过敏和运动不足。伤害感受器受体使用鸟嘌呤核苷酸结合蛋白来介导抑制腺苷酸环化酶,激活钾离子通道和抑制钙离子通道。使用敲除小鼠已经表明,伤害感受器受体不是调节伤害感受反应或运动活动所必需的,而是调节听觉功能。在这里,我们显示了缺少伤害感受素受体的小鼠比对照小鼠具有更大的学习能力和更好的记忆力。组织学分析揭示了海马中的伤害性感受器前体和伤害性感受器受体的表达均被认为与学习和记忆有关。此外,受体缺陷型小鼠在海马CA1区的长期增强作用明显大于对照小鼠,而突触前或突触后电生理特性没有明显变化。这些结果表明,伤害感受态受体的丧失导致CA1的记忆过程和长期增强机制均发生功能获得性突变,这可能是神经元中细胞内信号转导系统改变的结果。

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