Zhou L, Zhang C L, Messing A, Chiu S Y
Department of Physiology, University of Wisconsin School of Medicine, Madison, Wisconsin 53706, USA.
J Neurosci. 1998 Sep 15;18(18):7200-15. doi: 10.1523/JNEUROSCI.18-18-07200.1998.
In mammalian myelinated nerves, the internodal axon that is normally concealed by the myelin sheath expresses a rich repertoire of K channel subtypes thought to be important in modulating action potential propagation. The function of myelin-covered K channels at transition zones, however, has remained unexplored. Here we show that deleting the voltage-sensitive potassium channel Kv1.1 from mice confers a marked temperature-sensitivity to neuromuscular transmission in postnatal day 14 (P14)-P21 mice. Using immunofluorescence and electrophysiology, we examined contributions of four regions of the peripheral nervous system to the mutant phenotype: the nerve trunk, the myelinated segment preceding the terminal, the presynaptic terminal membrane itself, and the muscle. We conclude that the temperature-sensitive neuromuscular transmission is accounted for solely by a deficiency in Kv1.1 normally concealed in the myelinated segments just preceding the terminal. This paper demonstrates that under certain situations of physiological stress, the functional role of myelin-covered K channels is dramatically enhanced as the transition zone at the neuromuscular junction is approached.
在哺乳动物的有髓神经中,通常被髓鞘包裹的结间轴突表达了丰富的钾通道亚型,这些亚型被认为在调节动作电位传导中起重要作用。然而,髓鞘覆盖的钾通道在过渡区的功能仍未得到探索。在这里,我们表明从小鼠中删除电压敏感性钾通道Kv1.1会使出生后第14天(P14)至第21天的小鼠神经肌肉传递具有显著的温度敏感性。我们使用免疫荧光和电生理学方法,研究了外周神经系统的四个区域对突变表型的贡献:神经干、终末前的有髓节段、突触前终末膜本身以及肌肉。我们得出结论,温度敏感性神经肌肉传递完全是由终末前有髓节段中通常隐藏的Kv1.1缺乏所致。本文证明,在某些生理应激情况下,当接近神经肌肉接头的过渡区时,髓鞘覆盖的钾通道的功能作用会显著增强。