Department of Neuroscience II, Research Institute of Environmental Medicine, Nagoya University, Nagoya, Japan.
Department of Neural Regulation, Graduate School of Medicine, Nagoya University, Nagoya, Japan.
Elife. 2019 Jun 4;8:e44927. doi: 10.7554/eLife.44927.
Uninterrupted arousal is important for survival during threatening situations. Activation of orexin/hypocretin neurons is implicated in sustained arousal. However, orexin neurons produce and release orexin as well as several co-transmitters including dynorphin and glutamate. To disambiguate orexin-dependent and -independent physiological functions of orexin neurons, we generated a novel Orexin-flippase (Flp) knock-in mouse line. Crossing with Flp-reporter or Cre-expressing mice showed gene expression exclusively in orexin neurons. Histological studies confirmed that orexin was knock-out in homozygous mice. Orexin neurons without orexin showed altered electrophysiological properties, as well as received decreased glutamatergic inputs. Selective chemogenetic activation revealed that both orexin and co-transmitters functioned to increase wakefulness, however, orexin was indispensable to promote sustained arousal. Surprisingly, such activation increased the total time spent in cataplexy. Taken together, orexin is essential to maintain basic membrane properties and input-output computation of orexin neurons, as well as to exert awake-sustaining aptitude of orexin neurons.
在威胁情况下,不间断的觉醒对于生存很重要。orexin/hypocretin 神经元的激活被认为与持续的觉醒有关。然而,orexin 神经元产生并释放 orexin 以及几种共递质,包括 dynorphin 和谷氨酸。为了区分 orexin 神经元的依赖和不依赖 orexin 的生理功能,我们生成了一种新型的 Orexin 翻转酶(Flp)敲入小鼠品系。与 Flp 报告基因或 Cre 表达小鼠杂交显示基因表达仅在 orexin 神经元中。组织学研究证实,orexin 在纯合子小鼠中被敲除。没有 orexin 的 orexin 神经元表现出改变的电生理特性,并且接收的谷氨酸能输入减少。选择性化学遗传激活表明,orexin 和共递质都能增加觉醒,但 orexin 对于促进持续觉醒是必不可少的。令人惊讶的是,这种激活增加了猝倒发作的总时间。总之,orexin 对于维持 orexin 神经元的基本膜特性和输入-输出计算,以及发挥 orexin 神经元的维持觉醒能力是必需的。