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首页> 外文期刊>Molecular pain >Distinct expression of synaptic NR2A and NR2B in the central nervous system and impaired morphine tolerance and physical dependence in mice deficient in postsynaptic density-93 protein
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Distinct expression of synaptic NR2A and NR2B in the central nervous system and impaired morphine tolerance and physical dependence in mice deficient in postsynaptic density-93 protein

机译:突触后密度93蛋白缺乏的小鼠中枢神经系统中突触NR2A和NR2B的明显表达以及吗啡耐受性和身体依赖性受损

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摘要

Postsynaptic density (PSD)-93, a neuronal scaffolding protein, binds to and clusters N-methyl-D-aspartate receptor (NMDAR) subunits NR2A and NR2B at cellular membranes in vitro. However, the roles of PSD-93 in synaptic NR2A and NR2B targeting in the central nervous system and NMDAR-dependent physiologic and pathologic processes are still unclear. We report here that PSD-93 deficiency significantly decreased the amount of NR2A and NR2B in the synaptosomal membrane fractions derived from spinal cord dorsal horn and forebrain cortex but did not change their levels in the total soluble fraction from either region. However, PSD-93 deficiency did not markedly change the amounts of NR2A and NR2B in either synaptosomal or total soluble fractions from cerebellum. In mice deficient in PSD-93, morphine dose-dependent curve failed to shift significantly rightward as it did in wild type (WT) mice after acute and chronic morphine challenge. Unlike WT mice, PSD-93 knockout mice also showed marked losses of NMDAR-dependent morphine analgesic tolerance and associated abnormal sensitivity in response to mechanical, noxious thermal, and formalin-induced inflammatory stimuli after repeated morphine injection. In addition, PSD-93 knockout mice displayed dramatic loss of jumping activity, a typical NMDAR-mediated morphine withdrawal abstinence behavior. These findings indicate that impaired NMDAR-dependent neuronal plasticity following repeated morphine injection in PSD-93 knockout mice is attributed to PSD-93 deletion-induced alterations of synaptic NR2A and NR2B expression in dorsal horn and forebrain cortex neurons. The selective effect of PSD-93 deletion on synaptic NMDAR expression in these two major pain-related regions might provide the better strategies for the prevention and treatment of opioid tolerance and physical dependence.
机译:突触后密度(PSD)-93,一种神经元支架蛋白,在体外细胞膜上与N-甲基-D-天冬氨酸受体(NMDAR)亚基NR2A和NR2B结合并成簇。但是,PSD-93在中枢神经系统和NMDAR依赖的生理和病理过程中的突触NR2A和NR2B靶向中的作用仍不清楚。我们在这里报告,PSD-93缺乏症显着减少了源自脊髓背角和前脑皮质的突触体膜部分中的NR2A和NR2B的量,但未改变它们在任一区域的总可溶性部分中的水平。但是,PSD-93缺乏并没有明显改变小脑的突触体或总可溶性部分中NR2A和NR2B的含量。在缺乏PSD-93的小鼠中,吗啡剂量依赖性曲线不能像急性和慢性吗啡攻击后的野生型(WT)小鼠那样明显向右移动。与野生型小鼠不同,PSD-93基因敲除小鼠在重复注射吗啡后,对机械,有毒的热和福尔马林诱导的炎症刺激也显示出明显的NMDAR依赖性吗啡镇痛耐受性丧失和相关的异常敏感性。此外,PSD-93基因敲除小鼠表现出明显的跳跃活动丧失,这是典型的NMDAR介导的吗啡戒断行为。这些发现表明,在PSD-93基因敲除小鼠中反复注射吗啡后,受损的NMDAR依赖性神经元可塑性受损归因于PSD-93缺失诱导的背角和前脑皮质神经元突触NR2A和NR2B表达的改变。 PSD-93缺失对这两个主要的疼痛相关区域中突触NMDAR表达的选择性作用可能为预防和治疗阿片类药物耐受性和身体依赖性提供更好的策略。

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