Suppr超能文献

早期发育性髓鞘形成过程中施万细胞的钾通道调节

Potassium channel regulation in Schwann cells during early developmental myelinogenesis.

作者信息

Wilson G F, Chiu S Y

机构信息

Department of Neurophysiology, University of Wisconsin, Madison 53706.

出版信息

J Neurosci. 1990 May;10(5):1615-25. doi: 10.1523/JNEUROSCI.10-05-01615.1990.

Abstract

The presence of neuronal-like, voltage-gated ion channels on glia has raised questions concerning their physiological roles. Insights into glial channel function can be gained by examining regulation of channel expression during axoglial interactions. We examine the regulation of Schwann cell potassium channels in developing sciatic nerves of newborn rats when myelin is first laid down. During the initial postnatal week, cell-attached patch-clamp recordings at soma of Schwann cells with visible myelin revealed an inward rectifying potassium channel (KIR), to date described only in CNS glia but not Schwann cells, as well as an outward potassium channel (KO). Around the resting potential, the KO channel is virtually closed, while the KIR channel appears maximally open. Compared with the KO channel, the KIR channel is blocked by low concentrations of Cs+ and exhibits higher sensitivity to 4-aminopyridine (4AP). Further, the KIR channel appears similar to other mammalian inward rectifiers and rectification depends, in part, on cytoplasmic Mg2+. Channel regulation bears an interesting relation to early myelination: as the average number of myelin lamellae increases from 6 to 21 from day 2 to day 8, currents decrease by 80-90%. The reduction in KO current also parallels the known decrease in proliferation of Schwann cells as they are being committed to myelination, supporting the recently proposed notion of a functional link between potassium channels and proliferation. The KIR channels, by virtue of being open at the resting potential, may play a role in buffering activity-dependent K+ accumulation during early myelin formation. The subsequent reduction in somal channel density may parallel a diminished need for K+ buffering as electrogenesis is restricted to nodal regions.

摘要

神经胶质细胞上存在神经元样的电压门控离子通道,这引发了关于其生理作用的疑问。通过研究轴突与神经胶质细胞相互作用过程中通道表达的调控,可以深入了解神经胶质细胞通道的功能。我们研究新生大鼠发育中的坐骨神经中施万细胞钾通道的调控,此时髓鞘开始形成。在出生后的第一周,对有可见髓鞘的施万细胞胞体进行细胞贴附式膜片钳记录,发现了一种内向整流钾通道(KIR),该通道迄今为止仅在中枢神经系统神经胶质细胞中描述过,而在施万细胞中未见报道,同时还发现了一种外向钾通道(KO)。在静息电位附近,KO通道几乎关闭,而KIR通道似乎处于最大开放状态。与KO通道相比,KIR通道被低浓度的Cs +阻断,并且对4 - 氨基吡啶(4AP)表现出更高的敏感性。此外,KIR通道与其他哺乳动物的内向整流器相似,整流作用部分取决于细胞质中的Mg2 +。通道调控与早期髓鞘形成有着有趣的关系:从第2天到第8天,随着髓鞘板层的平均数量从6增加到21,电流下降了80 - 90%。KO电流的减少也与施万细胞在致力于髓鞘形成时已知的增殖减少相平行,这支持了最近提出的钾通道与增殖之间存在功能联系的观点。KIR通道由于在静息电位时开放,可能在早期髓鞘形成过程中缓冲活动依赖性K +积累方面发挥作用。随着电活动仅限于结区,随后胞体通道密度的降低可能与对K +缓冲需求的减少相平行。

相似文献

7
cAMP-mediated expression of inwardly rectifying potassium channels in cultured mouse Schwann cells.
Brain Res. 1992 Oct 30;594(2):197-204. doi: 10.1016/0006-8993(92)91126-y.

引用本文的文献

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验