Poliak Sebastian, Salomon Daniela, Elhanany Hadas, Sabanay Helena, Kiernan Brent, Pevny Larysa, Stewart Colin L, Xu Xiaorong, Chiu Shing-Yan, Shrager Peter, Furley Andrew J W, Peles Elior
Department of Molecular Cell Biology, The Weizmann Institute of Science, Rehovot 76100, Israel.
J Cell Biol. 2003 Sep 15;162(6):1149-60. doi: 10.1083/jcb.200305018. Epub 2003 Sep 8.
In myelinated axons, K+ channels are concealed under the myelin sheath in the juxtaparanodal region, where they are associated with Caspr2, a member of the neurexin superfamily. Deletion of Caspr2 in mice by gene targeting revealed that it is required to maintain K+ channels at this location. Furthermore, we show that the localization of Caspr2 and clustering of K+ channels at the juxtaparanodal region depends on the presence of TAG-1, an immunoglobulin-like cell adhesion molecule that binds Caspr2. These results demonstrate that Caspr2 and TAG-1 form a scaffold that is necessary to maintain K+ channels at the juxtaparanodal region, suggesting that axon-glia interactions mediated by these proteins allow myelinating glial cells to organize ion channels in the underlying axonal membrane.
在有髓轴突中,钾离子通道隐藏在髓鞘下的近节旁区域,在那里它们与神经纤连蛋白超家族成员Caspr2相关联。通过基因靶向敲除小鼠体内的Caspr2发现,维持钾离子通道在此位置需要该蛋白。此外,我们发现Caspr2的定位以及钾离子通道在近节旁区域的聚集取决于TAG-1的存在,TAG-1是一种与Caspr2结合的免疫球蛋白样细胞粘附分子。这些结果表明,Caspr2和TAG-1形成了一个维持近节旁区域钾离子通道所必需的支架,这表明由这些蛋白质介导的轴突-胶质细胞相互作用使髓鞘形成性胶质细胞能够在轴突膜中组织离子通道。