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首页> 外文期刊>Journal of cell biology >The cytoskeletal adapter protein 4.1G organizes the internodes in peripheral myelinated nerves
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The cytoskeletal adapter protein 4.1G organizes the internodes in peripheral myelinated nerves

机译:细胞骨架衔接蛋白4.1G组成周围有髓神经的节间

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摘要

Myelinating Schwann cells regulate the localization of ion channels on the surface of the axons they ensheath. This function depends on adhesion complexes that are positioned at specific membrane domains along the myelin unit. Here we show that the precise localization of internodal proteins depends on the expression of the cytoskeletal adapter protein 4.1G in Schwann cells. Deletion of 4.1G in mice resulted in aberrant distribution of both glial adhesion molecules and axonal proteins that were present along the internodes. In wild-type nerves, juxtaparanodal proteins (i.e., Kv1 channels, Caspr2, and TAG-1) were concentrated throughout the internodes in a double strand that flanked paranodal junction components (i.e., Caspr, contactin, and NF155), and apposes the inner mesaxon of the myelin sheath. In contrast, in 4.1G ?/? mice, these proteins “piled up” at the juxtaparanodal region or aggregated along the internodes. These findings suggest that protein 4.1G contributes to the organization of the internodal axolemma by targeting and/or maintaining glial transmembrane proteins along the axoglial interface.
机译:有髓鞘的雪旺氏细胞调节它们所包裹的轴突表面上离子通道的定位。该功能取决于沿髓磷脂单元位于特定膜结构域的粘附复合物。在这里,我们显示节间蛋白的精确定位取决于雪旺细胞中细胞骨架衔接蛋白4.1G的表达。小鼠中4.1G的缺失导致沿节间存在的神经胶质粘附分子和轴突蛋白的异常分布。在野生型神经中,近节旁蛋白(即Kv1通道,Caspr2和TAG-1)集中在整个节间的双链中,该双链侧翼位于节旁结成分(即Caspr,contactin和NF155),并位于内部髓鞘的中轴。相反,在4.1G中?在小鼠中,这些蛋白质“堆积”在近旁结节区域或沿节间聚集。这些发现表明,蛋白4.1G通过沿着和/或维持沿胶质细胞界面的神经胶质跨膜蛋白而有助于节间性轴索的组织。

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