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年龄依赖性和睡眠/发作诱导的常染色体显性睡眠相关运动性癫痫的发病机制。

Age-Dependent and Sleep/Seizure-Induced Pathomechanisms of Autosomal Dominant Sleep-Related Hypermotor Epilepsy.

机构信息

Department of Neuropsychiatry, Division of Neuroscience, Graduate School of Medicine, Mie University, Tsu, Mie 514-8507, Japan.

出版信息

Int J Mol Sci. 2020 Oct 30;21(21):8142. doi: 10.3390/ijms21218142.

Abstract

The loss-of-function S284L-mutant α4 subunit of the nicotinic acetylcholine receptor (nAChR) is considered to contribute to the pathomechanism of autosomal dominant sleep-related hypermotor epilepsy (ADSHE); however, the age-dependent and sleep-related pathomechanisms of ADSHE remain to be clarified. To explore the age-dependent and sleep-induced pathomechanism of ADSHE, the present study determined the glutamatergic transmission abnormalities associated with α4β2-nAChR and the astroglial hemichannel in the hyperdirect and corticostriatal pathways of ADSHE model transgenic rats (S286L-TG) bearing the rat S286L-mutant gene corresponding to the human S284L-mutant gene of ADSHE, using multiprobe microdialysis and capillary immunoblotting analyses. This study could not detect glutamatergic transmission in the corticostriatal pathway from the orbitofrontal cortex (OFC) to the striatum. Before ADSHE onset (four weeks of age), functional abnormalities of glutamatergic transmission compared to the wild-type in the cortical hyperdirect pathway, from OFC to the subthalamic nucleus (STN) in S286L-TG, could not be detected. Conversely, after ADSHE onset (eight weeks of age), glutamatergic transmission in the hyperdirect pathway of S286L-TG was enhanced compared to the wild-type. Notably, enhanced glutamatergic transmission of S286L-TG was revealed by hemichannel activation in the OFC. Expression of connexin43 (Cx43) in the OFC of S286L-TG was upregulated after ADSHE onset but was almost equal to the wild-type prior to ADSHE onset. Differences in the expression of phosphorylated protein kinase B (pAkt) before ADSHE onset between the wild-type and S286L-TG were not observed; however, after ADSHE onset, pAkt was upregulated in S286L-TG. Conversely, the expression of phosphorylated extracellular signal-regulated kinase (pErk) was already upregulated before ADSHE onset compared to the wild-type. Both before and after ADSHE onset, subchronic nicotine administration decreased and did not affect the both expression of Cx43 and pErk of respective wild-type and S286L-TG, whereas the pAkt expression of both the wild-type and S286L-TG was increased by nicotine. Cx43 expression in the plasma membrane of the primary cultured astrocytes of the wild-type was increased by elevation of the extracellular K level (higher than 10 mM), and the increase in Cx43 expression in the plasma membrane required pErk functions. These observations indicate that a combination of functional abnormalities, GABAergic disinhibition, and upregulated pErk induced by the loss-of-function S286L-mutant α4β2-nAChR contribute to the age-dependent and sleep-induced pathomechanism of ADSHE via the upregulation/hyperactivation of the Cx43 hemichannels.

摘要

S284L 突变的烟碱型乙酰胆碱受体 (nAChR)α4 亚基的功能丧失被认为是导致常染色体显性睡眠相关运动性癫痫 (ADSHE)发病机制的原因;然而,ADSHE 的年龄依赖性和睡眠相关发病机制仍需阐明。为了探索 ADSHE 的年龄依赖性和睡眠诱导发病机制,本研究使用多探针微透析和毛细管免疫印迹分析,确定了与 α4β2-nAChR 相关的谷氨酸能传递异常以及 ADSHE 模型转基因大鼠 (S286L-TG) 超直接和皮质纹状体通路中的星形胶质半通道,这些大鼠携带与 ADSHE 人类 S284L 突变基因相对应的大鼠 S286L 突变基因。本研究无法检测到来自眶额皮质 (OFC) 到纹状体的皮质纹状体通路上的谷氨酸能传递。在 ADSHE 发作前 (4 周龄),与野生型相比,S286L-TG 超直接通路中从 OFC 到丘脑底核 (STN) 的谷氨酸能传递功能异常无法检测到。相反,在 ADSHE 发作后 (8 周龄),S286L-TG 的超直接通路中的谷氨酸能传递增强。值得注意的是,OFC 中的半通道激活揭示了 S286L-TG 增强的谷氨酸能传递。S286L-TG 的 OFC 中连接蛋白 43 (Cx43) 的表达在 ADSHE 发作后上调,但在 ADSHE 发作前几乎与野生型相同。在 ADSHE 发作前,野生型和 S286L-TG 之间磷酸化蛋白激酶 B (pAkt) 的表达差异没有观察到;然而,在 ADSHE 发作后,S286L-TG 中的 pAkt 上调。相反,与野生型相比,磷酸化细胞外信号调节激酶 (pErk) 的表达在 ADSHE 发作前已经上调。在 ADSHE 发作前后,慢性尼古丁给药降低但不影响各自野生型和 S286L-TG 的 Cx43 和 pErk 的表达,而尼古丁增加了野生型和 S286L-TG 的 pAkt 表达。升高的细胞外 K 水平 (高于 10 mM) 可增加野生型原代培养星形胶质细胞质膜中 Cx43 的表达,而 Cx43 质膜表达的增加需要 pErk 功能。这些观察结果表明,功能异常、GABA 能抑制解除和由失活的 S286L 突变α4β2-nAChR 引起的上调的 pErk 共同导致了 ADSHE 的年龄依赖性和睡眠诱导发病机制,这是通过 Cx43 半通道的上调/过度激活来实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4524/7662760/a7138e333424/ijms-21-08142-g001.jpg

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