Alterations in HCN1 expression and distribution during epileptogenesis in rats

被引:0
作者
Zhao, Ke [1 ,2 ,3 ]
Li, Yinchao [1 ]
Lai, Huanling [2 ]
Niu, Ruili [2 ]
Li, Huifeng [2 ]
He, Shipei [2 ]
Su, Zhengwei [1 ]
Gui, Yue [2 ]
Ren, Lijie [3 ]
Yang, Xiaofeng [2 ]
Zhou, Liemin [1 ]
机构
[1] Sun Yat sen Univ, Affiliated Hosp 7, Dept Neurol, 628 Zhenyuan Rd,Xinhu St, Shenzhen, Peoples R China
[2] Guangzhou Natl Lab, 9 XingDaoHuanBei Rd, Guangzhou, Guangdong, Peoples R China
[3] Shenzhen Univ, Affiliated Hosp 1, Shenzhen Peoples Hosp 2, Dept Neurol, Sungang Rd, Shenzhen, Peoples R China
关键词
Hyperpolarization-activated cyclic nucleotide- gated channel 1; Epileptogenesis; Temporal lobe epilepsy; Neocortical epilepsy; Pilocarpine-induced epilepsy rat model; Cobalt wire-induced rat epilepsy model; CHANNEL SURFACE EXPRESSION; NUCLEOTIDE-GATED CHANNELS; ACTIVATED CATION CURRENT; GYRUS GRANULE CELLS; I-H; EXCITABILITY; HIPPOCAMPUS; PILOCARPINE; PACEMAKER; SUBUNITS;
D O I
10.1016/j.eplepsyres.2024.107355
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background: The hyperpolarization-activated cyclic nucleotide-gated cation channel (HCN1) is predominantly located in key regions associated with epilepsy, such as the neocortex and hippocampus. Under normal physiological conditions, HCN1 plays a crucial role in the excitatory and inhibitory regulation of neuronal networks. In temporal lobe epilepsy, the expression of HCN1 is decreased in the hippocampi of both animal models and patients. However, whether HCN1 expression changes during epileptogenesis preceding spontaneous seizures remains unclear. Objective: The aim of this study was to determine whether the expression of HCN1 is altered during the epileptic prodromal phase, thereby providing evidence for its role in epileptogenesis. Methods: We utilized a cobalt wire-induced rat epilepsy model to observe changes in HCN1 during epileptogenesis and epilepsy. Additionally, we also compared HCN1 alterations in epileptogenic tissues between cobalt wire- and pilocarpine-induced epilepsy rat models. Long-term video EEG recordings were used to confirm seizures development. Transcriptional changes, translation, and distribution of HCN1 were assessed using highthroughput transcriptome sequencing, total protein extraction, membrane and cytoplasmic protein fractionation, western blotting, immunohistochemistry, and immunofluorescence techniques. Results: In the cobalt wire-induced rat epilepsy model during the epileptogenesis phase, total HCN1 mRNA and protein levels were downregulated. Specifically, the membrane expression of HCN1 was decreased, whereas cytoplasmic HCN1 expression showed no significant change. The distribution of HCN1 in the distal dendrites of neurons decreased. During the epilepsy period, similar HCN1 alterations were observed in the neocortex of rats with cobalt wire-induced epilepsy and hippocampus of rats with lithium pilocarpine-induced epilepsy, including downregulation of mRNA levels, decreased total protein expression, decreased membrane expression, and decreased distal dendrite expression. Conclusions: Alterations in HCN1 expression and distribution are involved in epileptogenesis beyond their association with seizure occurrence. Similarities in HCN1 alterations observed in epileptogenesis-related tissues from different models suggest a shared pathophysiological pathway in epileptogenesis involving HCN1 dysregulation. Therefore, the upregulation of HCN1 expression in neurons, maintenance of the HCN1 membrane, and distal dendrite distribution in neurons may represent promising disease-modifying strategies in epilepsy.
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页数:9
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