Traka Maria, Goutebroze Laurence, Denisenko Natalia, Bessa Maria, Nifli Artemisia, Havaki Sophia, Iwakura Yoichiro, Fukamauchi Fumihiko, Watanabe Kazutada, Soliven Betty, Girault Jean-Antoine, Karagogeos Domna
Department of Basic Science, University of Crete Medical School, Heraklion 71110, Crete, Greece.
J Cell Biol. 2003 Sep 15;162(6):1161-72. doi: 10.1083/jcb.200305078.
Myelination results in a highly segregated distribution of axonal membrane proteins at nodes of Ranvier. Here, we show the role in this process of TAG-1, a glycosyl-phosphatidyl-inositol-anchored cell adhesion molecule. In the absence of TAG-1, axonal Caspr2 did not accumulate at juxtaparanodes, and the normal enrichment of shaker-type K+ channels in these regions was severely disrupted, in the central and peripheral nervous systems. In contrast, the localization of protein 4.1B, an axoplasmic partner of Caspr2, was only moderately altered. TAG-1, which is expressed in both neurons and glia, was able to associate in cis with Caspr2 and in trans with itself. Thus, a tripartite intercellular protein complex, comprised of these two proteins, appears critical for axo-glial contacts at juxtaparanodes. This complex is analogous to that described previously at paranodes, suggesting that similar molecules are crucial for different types of axo-glial interactions.
髓鞘形成导致轴突膜蛋白在郎飞结处高度分离分布。在此,我们展示了TAG-1(一种糖基磷脂酰肌醇锚定的细胞粘附分子)在这一过程中的作用。在缺乏TAG-1的情况下,轴突Caspr2不会在近旁节积累,并且在中枢和外周神经系统中,这些区域中震颤型钾通道的正常富集受到严重破坏。相比之下,Caspr2的轴质伴侣蛋白4.1B的定位仅发生适度改变。TAG-1在神经元和神经胶质细胞中均有表达,它能够顺式结合Caspr2并反式结合自身。因此,由这两种蛋白质组成的三方细胞间蛋白复合物,似乎对近旁节处的轴突-神经胶质接触至关重要。这种复合物类似于先前在 paranodes所描述的复合物,表明类似的分子对不同类型的轴突-神经胶质相互作用至关重要。