首页> 外文期刊>Neurobiology of disease >Spike-and-wave discharge mediated reduction in hippocampal HCN1 channel function associates with learning deficits in a genetic mouse model of epilepsy
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Spike-and-wave discharge mediated reduction in hippocampal HCN1 channel function associates with learning deficits in a genetic mouse model of epilepsy

机译:突波和波放电介导的海马HCN1通道功能减少与癫痫的遗传小鼠模型中的学习缺陷相关。

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The GABAAγ2(R43Q) mouse is an established model of absence epilepsy displaying spontaneous spike-and-wave discharges (SWD) and associated behavioral arrest. Absence epilepsy typically results from cortico-thalamic networks. Nevertheless, there is increasing evidence for changes in hippocampal metabolism and electrical behavior, consistent with a link between absence seizures and hippocampus-related co-morbidities. Hyperpolarization-activated-cyclic-nucleotide-gated (HCN) channels are known to be transcriptionally regulated in a number of seizure models. Here we investigate the expression and function of these channels in the hippocampus of the genetic epilepsy model. A reduction in HCN1, but not HCN2 transcript, was observed in GABAAγ2(R43Q) mice relative to their littermate controls. In contrast, no change in HCN1 transcript was noted at an age prior to seizure expression or in a SWD-free model in which the R43Q mutation has been crossed into a seizure-resistant genetic background. Whole-cell recordings from CA1 pyramidal neurons confirm a reduction in Ih in the GABAAγ2(R43Q) mouse. Further, a left-shift in half-activation of the Ih conductance-voltage relationship is consistent with a reduction in HCN1 with no change in HCN2 channel expression. Behavioral analysis using the Morris water maze indicates that GABAAγ2(R43Q) mice are unable to learn as effectively as their wildtype littermates suggesting a deficit in hippocampal-based learning. SWD-free mice harboring the R43Q mutation had no learning deficit. We conclude that SWDs reduce hippocampal HCN1 expression and function, and that the reduction associates with a spatial learning deficit.
机译:GABAAγ2(R43Q)小鼠是一种失神癫痫的模型,显示出自发的波峰放电(SWD)和相关的行为停止。缺乏癫痫通常是由皮质-丘脑网络引起的。然而,越来越多的证据表明海马代谢和电行为发生变化,这与失神发作和海马相关的合并症之间的联系一致。已知超极化激活的环核苷酸门控(HCN)通道在许多癫痫发作模型中受到转录调控。在这里,我们调查遗传癫痫模型海马中这些通道的表达和功能。相对于同窝对照,在GABAAγ2(R43Q)小鼠中观察到HCN1的减少,但HCN2的转录没有减少。相反,在癫痫发作表达之前的年龄或在无SWD模型(其中R43Q突变已进入抗癫痫病的遗传背景)的无SWD模型中,未观察到HCN1转录物的变化。 CA1锥体神经元的全细胞记录证实GABAAγ2(R43Q)小鼠的Ih降低。此外,Ih电导-电压关系的半激活左移与HCN1的减少一致,而HCN2通道表达没有变化。使用莫里斯水迷宫的行为分析表明,GABAAγ2(R43Q)小鼠无法像野生型同窝仔一样有效地学习,表明海马型学习缺乏。带有R43Q突变的无SWD小鼠没有学习缺陷。我们得出结论,SWD减少了海马HCN1的表达和功能,并且减少与空间学习障碍有关。

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