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转录因子 Shox2 通过调节丘脑皮质神经元中的关键离子通道来塑造神经元的放电特性并抑制癫痫发作。

The Transcription Factor Shox2 Shapes Neuron Firing Properties and Suppresses Seizures by Regulation of Key Ion Channels in Thalamocortical Neurons.

机构信息

Neuroscience Program, Brain Institute, Tulane University, USA.

Cell and Molecular Biology, Tulane University, New Orleans, LA 70118, USA.

出版信息

Cereb Cortex. 2021 Jun 10;31(7):3194-3212. doi: 10.1093/cercor/bhaa414.

Abstract

Thalamocortical neurons (TCNs) play a critical role in the maintenance of thalamocortical oscillations, dysregulation of which can result in certain types of seizures. Precise control over firing rates of TCNs is foundational to these oscillations, yet the transcriptional mechanisms that constrain these firing rates remain elusive. We hypothesized that Shox2 is a transcriptional regulator of ion channels important for TCN function and that loss of Shox2 alters firing frequency and activity, ultimately perturbing thalamocortical oscillations into an epilepsy-prone state. In this study, we used RNA sequencing and quantitative PCR of control and Shox2 knockout mice to determine Shox2-affected genes and revealed a network of ion channel genes important for neuronal firing properties. Protein regulation was confirmed by Western blotting, and electrophysiological recordings showed that Shox2 KO impacted the firing properties of a subpopulation of TCNs. Computational modeling showed that disruption of these conductances in a manner similar to Shox2's effects modulated frequency of oscillations and could convert sleep spindles to near spike and wave activity, which are a hallmark for absence epilepsy. Finally, Shox2 KO mice were more susceptible to pilocarpine-induced seizures. Overall, these results reveal Shox2 as a transcription factor important for TCN function in adult mouse thalamus.

摘要

丘脑皮质神经元(TCNs)在维持丘脑皮质振荡中发挥着关键作用,其失调可能导致某些类型的癫痫发作。TCNs 放电率的精确控制是这些振荡的基础,但限制这些放电率的转录机制仍难以捉摸。我们假设 Shox2 是离子通道的转录调节剂,对于 TCN 的功能很重要,而 Shox2 的缺失会改变放电频率和活动,最终将丘脑皮质振荡扰乱为易发生癫痫的状态。在这项研究中,我们使用 RNA 测序和对照和 Shox2 敲除小鼠的定量 PCR 来确定受 Shox2 影响的基因,并揭示了一个对神经元放电特性很重要的离子通道基因网络。蛋白质调节通过 Western 印迹得到证实,电生理记录显示 Shox2 KO 影响了 TCN 亚群的放电特性。计算模型表明,以类似于 Shox2 作用的方式破坏这些电导率可以调节振荡频率,并将睡眠纺锤波转换为接近尖波和棘波活动,这是失神性癫痫的标志。最后,Shox2 KO 小鼠对匹鲁卡品诱导的癫痫发作更敏感。总的来说,这些结果表明 Shox2 是成年小鼠丘脑 TCN 功能的重要转录因子。

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