首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >The Axonal Membrane Protein Caspr a Homologue of Neurexin IV Is a Component of the Septate-like Paranodal Junctions That Assemble during Myelination
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The Axonal Membrane Protein Caspr a Homologue of Neurexin IV Is a Component of the Septate-like Paranodal Junctions That Assemble during Myelination

机译:轴突膜蛋白CasprNeurexin IV的同系物是在髓鞘形成过程中聚集的类齿状妄想结的组成部分

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摘要

We have investigated the potential role of contactin and contactin-associated protein (Caspr) in the axonal–glial interactions of myelination. In the nervous system, contactin is expressed by neurons, oligodendrocytes, and their progenitors, but not by Schwann cells. Expression of Caspr, a homologue of Neurexin IV, is restricted to neurons. Both contactin and Caspr are uniformly expressed at high levels on the surface of unensheathed neurites and are downregulated during myelination in vitro and in vivo. Contactin is downregulated along the entire myelinated nerve fiber. In contrast, Caspr expression initially remains elevated along segments of neurites associated with nascent myelin sheaths. With further maturation, Caspr is downregulated in the internode and becomes strikingly concentrated in the paranodal regions of the axon, suggesting that it redistributes from the internode to these sites. Caspr expression is similarly restricted to the paranodes of mature myelinated axons in the peripheral and central nervous systems; it is more diffusely and persistently expressed in gray matter and on unmyelinated axons. Immunoelectron microscopy demonstrated that Caspr is localized to the septate-like junctions that form between axons and the paranodal loops of myelinating cells. Caspr is poorly extracted by nonionic detergents, suggesting that it is associated with the axon cytoskeleton at these junctions. These results indicate that contactin and Caspr function independently during myelination and that their expression is regulated by glial ensheathment. They strongly implicate Caspr as a major transmembrane component of the paranodal junctions, whose molecular composition has previously been unknown, and suggest its role in the reciprocal signaling between axons and glia.
机译:我们已经研究了接触素和接触素相关蛋白(Caspr)在髓鞘的轴突-胶质相互作用中的潜在作用。在神经系统中,接触素由神经元,少突胶质细胞及其祖细胞表达,但不由雪旺氏细胞表达。 Caspr的表达是Neurexin IV的同源物,仅限于神经元。 contactin和Caspr在未受刺激的神经突表面均以高水平均匀表达,并且在体外和体内髓鞘化过程中均被下调。接触蛋白沿整个有髓神经纤维被下调。相反,Caspr表达起初沿与新生髓鞘相关的神经突节段保持升高。随着进一步成熟,Caspr在节间被下调,并显着地集中在轴突的节旁区域,表明它从节间重新分布到这些部位。 Caspr表达类似地局限于周围和中枢神经系统中成熟的髓鞘轴突的节旁。它在灰质和无髓轴突中更广泛和持久地表达。免疫电子显微镜显示,Caspr定位于轴突和髓鞘细胞的旁结环之间形成的分隔样连接。 Caspr很难被非离子型去污剂提取,表明它与这些连接处的轴突细胞骨架有关。这些结果表明contactin和Caspr在髓鞘形成过程中独立发挥作用,它们的表达受胶质外皮的调节。他们强烈暗示卡斯普尔是淋巴结交界处的主要跨膜成分,其分子组成以前是未知的,并暗示其在轴突和神经胶质之间的相互信号传导中的作用。

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