...
首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >BK Channels Localize to the Paranodal Junction and Regulate Action Potentials in Myelinated Axons of Cerebellar Purkinje Cells
【24h】

BK Channels Localize to the Paranodal Junction and Regulate Action Potentials in Myelinated Axons of Cerebellar Purkinje Cells

机译:BK通道本地化到偏瘫结和规管小脑浦肯野细胞的髓质轴突中的动作电位。

获取原文
获取原文并翻译 | 示例

摘要

In myelinated axons, K+ channels are clustered in distinct membrane domains to regulate action potentials (APs). At nodes of Ranvier, Kv7 channels are expressed with Na+ channels, whereas Kv1 channels flank nodes at juxtaparanodes. Regulation of axonal APs by K+ channels would be particularly important in fast-spiking projection neurons such as cerebellar Purkinje cells. Here, we show that BK/Slo1 channels are clustered at the paranodal junctions of myelinated Purkinje cell axons of rat and mouse. The paranodal junction is formed by a set of cell-adhesion molecules, including Caspr, between the node and juxtaparanodes in which it separates nodal from internodal membrane domains. Remarkably, only Purkinje cell axons have detectable paranodal BK channels, whose clustering requires the formation of the paranodal junction via Caspr. Thus, BK channels occupy this unique domain in Purkinje cell axons along with the other K+ channel complexes at nodes and juxtaparanodes. To investigate the physiological role of novel paranodal BK channels, we examined the effect of BK channel blockers on antidromic AP conduction. We found that local application of blockers to the axon resulted in a significant increase in antidromic AP failure at frequencies above 100 Hz. We also found that Ni2+ elicited a similar effect on APs, indicating the involvement of Ni2+-sensitive Ca2+ channels. Furthermore, axonal application of BK channel blockers decreased the inhibitory synaptic response in the deep cerebellar nuclei. Thus, paranodal BK channels uniquely support high-fidelity firing of APs in myelinated Purkinje cell axons, thereby underpinning the output of the cerebellar cortex.
机译:在有髓轴突中,K +通道聚集在不同的膜结构域中,以调节动作电位(AP)。在Ranvier的节点上,Kv7通道用Na +通道表示,而Kv1通道在并列副节点的侧面。 K +通道对轴突AP的调节在诸如小脑Purkinje细胞等快速投射的投射神经元中尤为重要。在这里,我们显示BK / Slo1通道聚集在大鼠和小鼠的髓质浦肯野细胞轴突旁结。旁淋巴结由节点和并列旁淋巴结之间的一组细胞粘附分子(包括Caspr)形成,其中它将节点与节间膜结构域分开。值得注意的是,只有浦肯野细胞轴突具有可检测到的旁结BK通道,其聚集需要通过Caspr形成旁结连接。因此,BK通道在浦肯野细胞轴突中占据了这个独特的域,并且在节点和并列旁节点处占据了其他K +通道复合体。为了调查新型的偏执旁BK通道的生理作用,我们检查了BK通道阻滞剂对抗droped AP传导的影响。我们发现在轴突上局部应用阻滞剂会导致在高于100 Hz的频率下抗皮肤AP的失败率显着增加。我们还发现Ni2 +对AP产生了相似的影响,表明涉及Ni2 +敏感的Ca2 +通道。此外,BK通道阻滞剂的轴突应用降低了深小脑核的抑制性突触反应。因此,偏瘫BK通道独特地支持髓质浦肯野细胞轴突中AP的高保真发射,从而巩固了小脑皮质的输出。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号