Department of Anatomy, Otago School of Biomedical Sciences, University of Otago, Dunedin, New Zealand.
Brain Health Research Centre, University of Otago, Dunedin, New Zealand.
Sci Rep. 2017 Feb 21;7:42926. doi: 10.1038/srep42926.
In the stargazer mouse model of absence epilepsy, altered corticothalamic excitation of reticular thalamic nucleus (RTN) neurons has been suggested to contribute to abnormal synchronicity in the corticothalamic-thalamocortical circuit, leading to spike-wave discharges, the hallmark of absence seizures. AMPA receptor expression and function are decreased in stargazer RTN, due to a mutation of AMPAR auxiliary subunit stargazin. It is unresolved and debated, however, if decreased excitation of RTN is compatible with epileptogenesis. We tested the hypothesis that relative NMDAR expression may be increased in RTN and/or thalamic synapses in stargazers using Western blot on dissected thalamic nuclei and biochemically isolated synapses, as well as immunogold cytochemistry in RTN. Expression of main NMDAR subunits was variable in stargazer RTN and relay thalamus; however, mean expression values were not statistically significantly different compared to controls. Furthermore, no systematic changes in synaptic NMDAR levels could be detected in stargazer thalamus. In contrast, AMPAR subunits were markedly decreased in both nucleus-specific and synaptic preparations. Thus, defective AMPAR trafficking in stargazer thalamus does not appear to lead to a ubiquitous compensatory increase in total and synaptic NMDAR expression, suggesting that elevated NMDAR function is not mediated by changes in protein expression in stargazer mice.
在失神癫痫的星爆鼠模型中,已有研究表明,皮质丘脑兴奋改变网状丘脑核(RTN)神经元可能导致皮质丘脑-丘脑皮质回路中的异常同步,从而导致棘波-慢波放电,这是失神发作的标志。由于 AMPAR 辅助亚基星爆蛋白的突变,星爆鼠 RTN 中的 AMPA 受体表达和功能降低。然而,RTN 兴奋降低是否与癫痫发生兼容尚未得到解决和争议。我们使用 Western blot 在分离的丘脑核和生物化学分离的突触上,以及在 RTN 中进行免疫胶体金细胞化学,测试了 RTN 和/或丘脑突触中相对 NMDAR 表达可能增加的假设。在星爆鼠 RTN 和中继丘脑的主要 NMDAR 亚基表达是可变的;然而,与对照组相比,平均表达值没有统计学上的显著差异。此外,在星爆鼠丘脑未检测到突触 NMDAR 水平的系统变化。相比之下,在核特异性和突触制剂中,AMPA 亚基均显著降低。因此,星爆鼠丘脑中 AMPAR 转运的缺陷似乎不会导致总 NMDAR 和突触 NMDAR 表达的普遍代偿性增加,这表明兴奋性 NMDAR 功能的升高不是由星爆鼠中蛋白表达的变化介导的。