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首页> 外文期刊>Trends in Neurosciences >Neurexin IV, caspr and paranodin--novel members of the neurexin family: encounters of axons and glia.
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Neurexin IV, caspr and paranodin--novel members of the neurexin family: encounters of axons and glia.

机译:Neurexin IV,caspr和paranodin-神经毒素家族的新成员:轴突和神经胶质细胞的相遇。

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摘要

Axonal insulation is of key importance for the proper propagation of action potentials. In Drosophila and other invertebrates, it has recently been demonstrated that septate junctions play an essential role in axonal insulation or blood-brain-barrier formation. Neurexin IV, a molecular component of Drosophila septate junctions, has been shown to be essential for axonal insulation in the PNS in embryos and larvae. Interestingly, a vertebrate homolog of Neurexin IV, caspr--also named paranodin--has been shown to localize to septate-like junctional structures.These vertebrate junctions are localized to the paranodal region of the nodes of Ranvier, between axons and Schwann cells. Caspr/paranodin might play an important role in barrier formation, and link neuronal membrane components with the axonal cytoskeletal network.
机译:轴突绝缘对于正确传播动作电位至关重要。在果蝇和其他无脊椎动物中,最近已证明,分隔的连接在轴突隔离或血脑屏障形成中起重要作用。神经氨酸蛋白IV,果蝇分隔连接的分子成分,已被证明对于胚胎和幼虫中PNS的轴突隔离至关重要。有趣的是,已经显示出Neurexin IV的同系物caspr(也称为paranodin)定位于类隔状连接结构,这些脊椎动物的连接点位于Ranvier结的旁结节区域,位于轴突和Schwann细胞之间。 Caspr / paranodin可能在屏障形成中起重要作用,并将神经元膜成分与轴突细胞骨架网络联系起来。

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