Loss of HCN1 subunits causes absence epilepsy in rats

被引:23
作者
Nishitani, Ai [1 ]
Kunisawa, Naofumi [2 ]
Sugimura, Taketoshi [3 ]
Sato, Kazuaki [2 ,4 ]
Yoshida, Yusaku [5 ]
Suzuki, Toshiro [5 ]
Sakuma, Tetsushi [6 ]
Yamamoto, Takashi [6 ]
Asano, Masahide [1 ]
Saito, Yasuhiko [3 ]
Ohno, Yukihiro [2 ]
Kuramoto, Takashi [1 ,7 ]
机构
[1] Kyoto Univ, Grad Sch Med, Inst Lab Anim, Sakyo Ku, Yoshidakonoe Cho, Kyoto 6068501, Japan
[2] Osaka Univ Pharmaceut Sci, Dept Pharmacol, Takatsuki, Osaka 5691094, Japan
[3] Nara Med Univ, Dept Neurophysiol, Kashihara, Nara 6348521, Japan
[4] Kyoto Univ, Dept Epilepsy Movement Disorders & Physiol, Grad Sch Med, Sakyo Ku, Shogoinkawara Cho, Kyoto 6068507, Japan
[5] Japan SLC Inc, Res Dept Expt Anim, Biotech Ctr, Naka Ku, Hamamatsu, Shizuoka 4338114, Japan
[6] Hiroshima Univ, Dept Math & Life Sci, Grad Sch Sci, 1-3-1 Kagamiyama, Hiroshima 7398526, Japan
[7] Tokyo Univ Agr, Dept Anim Sci, Fac Agr, 1737 Funako, Atsugi, Kanagawa 2430034, Japan
关键词
Absence epilepsy; Eethosuximide; HCN1; Pentylenetetrazol; Rat; TALEN; ACTIVATED CATION CHANNELS; PYRAMIDAL NEURONS; PACEMAKER CHANNELS; MICE LACKING; I-H; EXCITABILITY; EXPRESSION; SEIZURES; MODELS; MATURATION;
D O I
10.1016/j.brainres.2018.11.004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Hyperpolarized-activated cyclic nucleotide-gated (HCN) channels underlie hyperpolarization-activated current (I-h) and are involved in controlling the excitability and electrical responsiveness of neurons. Absence epilepsy is clinically defined by a sudden, brief impairment of consciousness and behavioral arrest. Spike-and-wave discharges (SWDs) on electroencephalograms (EEG) are a diagnostic hallmark of absence epilepsy. In rat models of absence epilepsy, impaired function or expression of HCN1, a subtype of HCN channels, has been found. Here, to evaluate whether HCN1 deficiency causes absence epilepsy in rats, we developed Hcn1-knockout rats by transcription activator-like effector nuclease mutagenesis. The cortical and hippocampal pyramidal neurons of these rats displayed a significant reduction of I-h, a pronounced hyperpolarizing shift of the resting membrane potential, and increased input resistance, which indicated that the Hcn1-knockout rats were deficient in HCN1 function. The Hcn1-knockout rats were also more vulnerable to pentylenetetrazol-induced acute convulsions. More importantly, they exhibited spontaneous SWDs, which were accompanied by behavioral arrest, both of which were suppressed by ethosuximide. These results confirm the involvement of the HCN1 subunit in the regulation of input resistance and provide direct evidence that a deficiency of HCN1 caused absence epilepsy in rats.
引用
收藏
页码:209 / 217
页数:9
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