首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Contactin-1 regulates myelination and nodal/paranodal domain organization in the central nervous system
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PNAS Plus: Contactin-1 regulates myelination and nodal/paranodal domain organization in the central nervous system

机译:PNAS Plus:Contactin-1调节中枢神经系统的髓鞘形成和淋巴结/旁淋巴结结构

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摘要

Myelin, a multilayered membrane sheath formed by oligodendrocytes around axons in the CNS, enables rapid nerve impulse conduction and sustains neuronal health. The signals exchanged between axons and oligodendrocytes in myelin remain to be fully elucidated. Here we provide genetic evidence for multiple and critical functions of Contactin-1 in central myelin. We document dynamic Contactin-1 expression on oligodendrocytes in vivo, and progressive accumulation at nodes of Ranvier and paranodes during postnatal mouse development. Nodal and paranodal expression stabilized in mature myelin, but overall membranous expression diminished. Contactin-1–deficiency disrupted paranodal junction formation as evidenced by loss of Caspr, mislocalized potassium Kv1.2 channels, and abnormal myelin terminal loops. Reduced numbers and impaired maturation of sodium channel clusters accompanied this phenotype. Histological, electron microscopic, and biochemical analyses uncovered significant hypomyelination in Contactin-1–deficient central nerves, with up to 60% myelin loss. Oligodendrocytes were present in normal numbers, albeit a minor population of neuronal/glial antigen 2-positive (NG2+) progenitors lagged in maturation by postnatal day 18, when the mouse null mutation was lethal. Major contributing factors to hypomyelination were defects in the generation and organization of myelin membranes, as judged by electron microscopy and quantitative analysis of oligodendrocyte processes labeled by GFP transgenically expressed from the proteolipid protein promoter. These data reveal that Contactin-1 regulates both myelin formation and organization of nodal and paranodal domains in the CNS. These multiple roles distinguish central Contactin-1 functions from its specific role at paranodes in the periphery, and emphasize mechanistic differences in central and peripheral myelination.
机译:髓磷脂是由中枢神经系统中轴突周围少突胶质细胞形成的多层膜鞘,能够快速进行神经冲动传导并维持神经元健康。髓磷脂中的轴突和少突胶质细胞之间交换的信号仍有待充分阐明。在这里,我们为Contactin-1在中央髓鞘中的多种和关键功能提供了遗传学证据。我们记录了动态Contactin-1在体内少突胶质细胞上的表达,以及在产后小鼠发育过程中Ranvier和副节的结点逐渐积累。在成熟的髓磷脂中,淋巴结和副淋巴结的表达稳定,但总体膜表达减少。 Contactin-1缺乏症破坏了结旁结的形成,如Caspr缺失,Kv1.2钾离子通道定位错误和髓磷脂末端环异常所证明。伴随这种表型的钠通道簇数量减少和成熟受损。组织学,电子显微镜和生化分析发现,在Contactin-1缺乏的中枢神经中存在明显的髓鞘减少,髓鞘损失高达60%。少突胶质细胞存在,尽管一小部分神经元/神经胶质抗原2阳性(NG2 + )祖细胞在出生后第18天成熟时就滞后,而小鼠无效突变是致命的。电镜检查和由脂蛋白启动子转基因表达的GFP标记的少突胶质细胞过程的定量分析表明,促成髓鞘减少的主要因素是髓鞘膜的生成和组织缺陷。这些数据表明Contactin-1调节了中枢神经系统中髓磷脂的形成以及淋巴结和旁淋巴结域的组织。这些多重作用将中央Contactin-1功能与其在外周节旁的特定作用区分开,并强调中央和外周髓鞘化的机制差异。

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