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Altered Actions of Memantine and NMDA-Induced Currents in a New Grid2-Deleted Mouse Line

机译:新的Grid2删除的鼠标行中的美金刚和NMDA感应电流的改变的行为

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摘要

Memantine is a non-competitive antagonist of the N-methyl-d-aspartate (NMDA) receptor, and is an approved drug for the treatment of moderate-to-severe Alzheimer’s disease. We identified a mouse strain with a naturally occurring mutation and an ataxic phenotype that presents with severe leg cramps. To investigate the phenotypes of these mutant mice, we screened several phenotype-modulating drugs and found that memantine (10 mg/kg) disrupted the sense of balance in the mutants. Moreover, the mutant mice showed an attenuated optokinetic response (OKR) and impaired OKR learning, which was also observed in wild-type mice treated with memantine. Microsatellite analyses indicated that the Grid2 gene-deletion is responsible for these phenotypes. Patch-clamp analysis showed a relatively small change in NMDA-dependent current in cultured granule cells from Grid2 gene-deleted mice, suggesting that GRID2 is important for correct NMDA receptor function. In general, NMDA receptors are activated after the activation of non-NMDA receptors, such as AMPA receptors, and AMPA receptor dysregulation also occurs in Grid2 mutant mice. Indeed, the AMPA treatment enhanced memantine susceptibility in wild-type mice, which was indicated by balance sense and OKR impairments. The present study explores a new role for GRID2 and highlights the adverse effects of memantine in different genetic backgrounds.
机译:美金刚胺是N-甲基-d-天冬氨酸(NMDA)受体的非竞争性拮抗剂,并且是用于治疗中度至重度阿尔茨海默氏病的批准药物。我们确定了小鼠品系具有自然发生的突变和共济会的表型,表现出严重的腿抽筋。为了调查这些突变小鼠的表型,我们筛选了几种表型调节药物,发现美金刚(10 mg / kg)破坏了突变体的平衡感。此外,突变小鼠表现出减弱的光动力学反应(OKR)和受损的OKR学习,这也在用美金刚治疗的野生型小鼠中观察到。微卫星分析表明,Grid2基因缺失是造成这些表型的原因。膜片钳分析显示,Grid2基因缺失小鼠培养的颗粒细胞中NMDA依赖性电流的变化相对较小,这表明GRID2对于正确的NMDA受体功能很重要。通常,NMDA受体在非NMDA受体(例如AMPA受体)激活后被激活,并且AMP2受体失调也发生在Grid2突变小鼠中。实际上,AMPA治疗增强了野生型小鼠的美金刚药敏性,这由平衡感和OKR损伤表明。本研究探索了GRID2的新作用,并强调了美金刚在不同遗传背景下的不利影响。

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