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颤抖小鼠遗传性髓鞘形成异常脊髓轴突的功能变化:结旁Kv1家族钾离子通道的作用

Functional changes in genetically dysmyelinated spinal cord axons of shiverer mice: role of juxtaparanodal Kv1 family K+ channels.

作者信息

Sinha Kusum, Karimi-Abdolrezaee Soheila, Velumian Alexander A, Fehlings Michael G

机构信息

Div. of Cell and Molecular Biology, Univ. of Toronto, Toronto Western Hospital, Univ. Health Network, Rm. 4W-449, 399 Bathurst St., Toronto, Ontario M5T 2S8, Canada.

出版信息

J Neurophysiol. 2006 Mar;95(3):1683-95. doi: 10.1152/jn.00899.2005. Epub 2005 Nov 30.

Abstract

Axonal dysfunction after spinal cord injury (SCI) and other types of neurotrauma is associated with demyelination and exposure of juxtaparanodal K+ channels. In this study, sucrose gap electrophysiology using selective and nonselective K+ channel blockers, confocal immunohistochemistry, and Western blotting were used to study the role of Kv1.1 and Kv1.2 K+ channel subunits in dysmyelination-induced spinal cord axonal dysfunction in shiverer mice, which lack the gene encoding myelin basic protein (MBP) and exhibit incomplete myelin sheath formation on CNS axons. The shiverer spinal cord axons exhibited smaller amplitude of compound action potentials (CAPs), reduced conduction velocity, reduced excitability, and greater degree of high-frequency conduction failure. The "fast" K+ channel blocker 4-aminopyridine, the toxin DTX-I, which targets the Kv1.1 and Kv1.2, but not DTX- K, which has higher selectivity for Kv1.1, increased the amplitude and area of CAPs of shiverer mice spinal cord axons but had insignificant effects in wild-type mice. Confocal immunohistochemistry showed that, unlike wild-type mice, which have a precise juxtaparanodal localization of the Kv1.l and Kv1.2 K+ channel subunits, shiverer mouse axons displayed a dispersed distribution of these subunits along the internodes. In contrast, the Kv1.l and Kv1.2 subunits, Na+ channels remained highly localized to the nodal regions. Western blotting showed an increased expression of Kv 1.1 and 1.2 in the shiverer mouse spinal cord. These results provide evidence that the neurological deficits associated with myelin deficiency reflect the altered distribution and expression of the K+ channel subunits Kv1.l and Kv1.2 along the internodes of spinal cord axons associated with the biophysical consequences caused by alterations in the myelin sheaths.

摘要

脊髓损伤(SCI)及其他类型的神经创伤后的轴突功能障碍与脱髓鞘及结旁K+通道暴露有关。在本研究中,使用选择性和非选择性K+通道阻滞剂的蔗糖间隙电生理学、共聚焦免疫组织化学和蛋白质印迹法,研究了Kv1.1和Kv1.2 K+通道亚基在颤抖小鼠脱髓鞘诱导的脊髓轴突功能障碍中的作用。颤抖小鼠缺乏编码髓鞘碱性蛋白(MBP)的基因,其中枢神经系统轴突上的髓鞘形成不完全。颤抖小鼠的脊髓轴突表现出复合动作电位(CAPs)幅度较小、传导速度降低、兴奋性降低以及高频传导失败程度更高。“快速”K+通道阻滞剂4-氨基吡啶、靶向Kv1.1和Kv1.2的毒素DTX-I,但对Kv1.1具有更高选择性的DTX-K对野生型小鼠影响不显著,却增加了颤抖小鼠脊髓轴突CAPs的幅度和面积。共聚焦免疫组织化学显示,与野生型小鼠不同,野生型小鼠的Kv1.1和Kv1.2 K+通道亚基在结旁有精确的定位,而颤抖小鼠轴突中这些亚基沿节间呈分散分布。相比之下,Kv1.1和Kv1.2亚基、Na+通道仍高度定位于结区。蛋白质印迹显示颤抖小鼠脊髓中Kv1.1和1.2的表达增加。这些结果提供了证据,表明与髓鞘缺乏相关的神经功能缺陷反映了K+通道亚基Kv1.1和Kv1.2沿脊髓轴突节间的分布和表达改变,这与髓鞘改变引起的生物物理后果相关。

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