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新型Grid2基因敲除小鼠品系中美金刚的作用改变及NMDA诱导电流

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

作者信息

Kumagai Ayako, Fujita Akira, Yokoyama Tomoki, Nonobe Yuki, Hasaba Yasuhiro, Sasaki Tsutomu, Itoh Yumi, Koura Minako, Suzuki Osamu, Adachi Shigeki, Ryo Haruko, Kohara Arihiro, Tripathi Lokesh P, Sanosaka Masato, Fukushima Toshiki, Takahashi Hiroyuki, Kitagawa Kazuo, Nagaoka Yasuo, Kawahara Hidehisa, Mizuguchi Kenji, Nomura Taisei, Matsuda Junichiro, Tabata Toshihide, Takemori Hiroshi

机构信息

Laboratory of Cell Signaling and Metabolic Disease, National Institute of Biomedical Innovation, Saito-Asagi, Ibaraki, Osaka 567-0085, Japan.

Laboratory for Neural Information Technology, Graduate School of Science and Engineering, University of Toyama, Toyama 930-8555, Japan.

出版信息

Genes (Basel). 2014 Dec 11;5(4):1095-114. doi: 10.3390/genes5041095.

Abstract

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.

摘要

美金刚是N-甲基-D-天冬氨酸(NMDA)受体的非竞争性拮抗剂,是一种已获批准用于治疗中重度阿尔茨海默病的药物。我们鉴定出一种具有自然发生突变且表现出共济失调表型并伴有严重腿部痉挛的小鼠品系。为了研究这些突变小鼠的表型,我们筛选了几种可调节表型的药物,发现美金刚(10毫克/千克)破坏了突变小鼠的平衡感。此外,突变小鼠的视动性眼震反应(OKR)减弱且OKR学习受损,在用美金刚治疗的野生型小鼠中也观察到了这种情况。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,来自Grid2基因敲除小鼠的培养颗粒细胞中,NMDA依赖性电流变化相对较小,这表明GRID2对正确的NMDA受体功能很重要。一般来说,NMDA受体在非NMDA受体(如AMPA受体)激活后被激活,并且Grid2突变小鼠中也会出现AMPA受体失调。事实上,AMPA处理增强了野生型小鼠对美金刚的易感性,这通过平衡感和OKR受损得以体现。本研究探索了GRID2的新作用,并突出了美金刚在不同遗传背景下的不良反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01f9/4276928/ed5782b5f6e7/genes-05-01095-g001.jpg

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