首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The expression of TAG-1 in glial cells is sufficient for the formation of the juxtaparanodal complex and the phenotypic rescue of tag-1 homozygous mutants in the CNS.
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The expression of TAG-1 in glial cells is sufficient for the formation of the juxtaparanodal complex and the phenotypic rescue of tag-1 homozygous mutants in the CNS.

机译:TAG-1在神经胶质细胞中的表达足以在CNS中形成并列旁淋巴结复合物和表型拯救tag-1纯合突变体。

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摘要

Myelinated fibers are organized into specialized domains that ensure the rapid propagation of action potentials and are characterized by protein complexes underlying axoglial interactions. TAG-1 (Transient Axonal Glycoprotein-1), a cell adhesion molecule of the Ig superfamily, is expressed by neurons as well as by myelinating glia. It is essential for the molecular organization of myelinated fibers as it maintains the integrity of the juxtaparanodal region through its interactions with Caspr2 and the voltage-gated potassium channels (VGKCs) on the axolemma. Since TAG-1 is the only known component of the juxtaparanodal complex expressed by the glial cell, it is important to clarify its role in the molecular organization of juxtaparanodes. For this purpose, we generated transgenic mice that exclusively express TAG-1 in oligodendrocytes and lack endogenous gene expression (Tag-1(-/-);plp(Tg(rTag-1))). Phenotypic analysis clearly demonstrates that glial TAG-1 is sufficient for the proper organization and maintenance of the juxtaparanodal domain in the CNS. Biochemical analysis shows that glial TAG-1 physically interacts with Caspr2 and VGKCs. Ultrastructural and behavioral analysis of Tag-1(-/-);plp(Tg(rTag-1)) mice shows that the expression of glial TAG-1 is sufficient to restore the axonal and myelin deficits as well as the behavioral defects observed in Tag-1(-/-) animals. Together, these data highlight the pivotal role of myelinating glia on axonal domain differentiation and organization.
机译:髓鞘纤维被组织成专门的域,以确保动作电位的快速传播,并以轴突相互作用基础的蛋白质复合物为特征。 TAG-1(瞬时轴突糖蛋白-1)是Ig超家族的细胞粘附分子,由神经元和有髓神经胶质细胞表达。它对于髓鞘纤维的分子组织至关重要,因为它通过与Caspr2和无轴血栓上的电压门控钾通道(VGKC)相互作用,保持了近旁结节区域的完整性。由于TAG-1是神经胶质细胞表达的近伞旁结复合物的唯一已知成分,因此阐明其在近伞旁节点的分子组织中的作用非常重要。为此目的,我们生成了只在少突胶质细胞中表达TAG-1而缺乏内源基因表达的转基因小鼠(Tag-1(-/-); plp(Tg(rTag-1)))。表型分析清楚地表明,神经胶质TAG-1足以适当地组织和维持中枢神经系统的近旁结节域。生化分析表明神经胶质TAG-1与Caspr2和VGKC发生物理相互作用。 Tag-1(-/-); plp(Tg(rTag-1))小鼠的超微结构和行为分析表明,神经胶质TAG-1的表达足以恢复轴突和髓磷脂的缺陷以及在小鼠中观察到的行为缺陷。 Tag-1(-/-)动物。这些数据一起突出了髓鞘神经胶质在轴突域分化和组织中的关键作用。

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