Burkart Marie-Elisabeth, Kurzke Josephine, Jacobi Robert, Vera Jorge, Ashcroft Frances M, Eilers Jens, Lippmann Kristina
Carl-Ludwig-Institute for Physiology, Faculty of Medicine, Leipzig University, Leipzig 04103, Germany.
Department for Neurophysiology, Institute for Physiology, Julius-Maximilians-University Würzburg, Würzburg 97070, Germany.
Brain. 2024 Dec 3;147(12):4200-4212. doi: 10.1093/brain/awae157.
ATP-sensitive potassium (KATP) channels couple cell metabolism to cellular electrical activity. Humans affected by severe activating mutations in KATP channels suffer from developmental delay, epilepsy and neonatal diabetes (DEND syndrome). While the aetiology of diabetes in DEND syndrome is well understood, the pathophysiology of the neurological symptoms remains unclear. We hypothesized that impaired activity of parvalbumin-positive interneurons (PV-INs) may result in seizures and cognitive problems. We found, by performing electrophysiological experiments, that expressing the DEND mutation Kir6.2-V59M selectively in mouse PV-INs reduced intrinsic gamma frequency preference and short-term depression as well as disturbed cognition-associated gamma oscillations and hippocampal sharp waves. Furthermore, the risk of seizures was increased and the day-night shift in gamma activity disrupted. Blocking KATP channels with tolbutamide partially rescued the network oscillations. The non-reversible part may, to some extent, result from observed altered PV-IN dendritic branching and PV-IN arrangement within CA1. In summary, PV-INs play a key role in DEND syndrome, and this provides a framework for establishing treatment options.
ATP敏感性钾(KATP)通道将细胞代谢与细胞电活动联系起来。受KATP通道严重激活突变影响的人类会出现发育迟缓、癫痫和新生儿糖尿病(DEND综合征)。虽然DEND综合征中糖尿病的病因已得到充分了解,但神经症状的病理生理学仍不清楚。我们推测小清蛋白阳性中间神经元(PV-INs)的活动受损可能导致癫痫发作和认知问题。通过进行电生理实验,我们发现,在小鼠PV-INs中选择性表达DEND突变Kir6.2-V59M会降低内在γ频率偏好和短期抑制,以及扰乱与认知相关的γ振荡和海马尖波。此外,癫痫发作风险增加,γ活动的昼夜节律被打乱。用甲苯磺丁脲阻断KATP通道可部分挽救网络振荡。不可逆部分可能在一定程度上源于观察到的CA1区内PV-IN树突分支和PV-IN排列的改变。总之,PV-INs在DEND综合征中起关键作用,这为建立治疗方案提供了一个框架。