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首页> 外文期刊>Journal of Neuroscience Research >Spatiotemporal ablation of myelinating glia-specific neurofascin (Nfasc NF155) in mice reveals gradual loss of paranodal axoglial junctions and concomitant disorganization of axonal domains.
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Spatiotemporal ablation of myelinating glia-specific neurofascin (Nfasc NF155) in mice reveals gradual loss of paranodal axoglial junctions and concomitant disorganization of axonal domains.

机译:小鼠脊髓性神经胶质细胞特异性神经钙蛋白(Nfasc NF155)的时空消融揭示了淋巴结旁神经胶质连接的逐渐丧失和轴突结构域的混乱。

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The evolutionary demand for rapid nerve impulse conduction led to the process of myelination-dependent organization of axons into distinct molecular domains. These domains include the node of Ranvier flanked by highly specialized paranodal domains where myelin loops and axolemma orchestrate the axoglial septate junctions. These junctions are formed by interactions between a glial isoform of neurofascin (Nfasc(NF155)) and axonal Caspr and Cont. Here we report the generation of myelinating glia-specific Nfasc(NF155) null mouse mutants. These mice exhibit severe ataxia, motor paresis, and death before the third postnatal week. In the absence of glial Nfasc(NF155), paranodal axoglial junctions fail to form, axonal domains fail to segregate, and myelinated axons undergo degeneration. Electrophysiological measurements of peripheral nerves from Nfasc(NF155) mutants revealed dramatic reductions in nerve conduction velocities. By using inducible PLP-CreER recombinase to ablate Nfasc(NF155) in adult myelinating glia, we demonstrate that paranodal axoglial junctions disorganize gradually as the levels of Nfasc(NF155) protein at the paranodes begin to drop. This coincides with the loss of the paranodal region and concomitant disorganization of the axonal domains. Our results provide the first direct evidence that the maintenance of axonal domains requires the fence function of the paranodal axoglial junctions. Together, our studies establish a central role for paranodal axoglial junctions in both the organization and the maintenance of axonal domains in myelinated axons.
机译:对快速神经冲动传导的进化需求导致了轴突的髓鞘依赖组织的过程成为不同的分子域。这些结构域包括Ranvier的节点,两侧是高度专业化的旁淋巴结结构域,其中髓磷脂环和axolemma编排了axglial septate交界处。这些连接是由神经钙蛋白(Nfasc(NF155))的神经胶质同种型与轴突Caspr和Cont之间的相互作用形成的。在这里,我们报告有髓神经胶质细胞特异性Nfasc(NF155)空小鼠突变体的产生。这些小鼠在产后第三周之前表现出严重的共济失调,运动轻瘫和死亡。在缺乏神经胶质Nfasc(NF155)的情况下,无法形成淋巴结旁的轴突连接,轴突域无法分离以及髓鞘轴突变性。 Nfasc(NF155)突变体周围神经的电生理学测量显示神经传导速度显着降低。通过使用诱导性PLP-CreER重组酶消融成年髓鞘神经胶质中的Nfasc(NF155),我们证明了随着节旁Nfasc(NF155)蛋白水平的下降,结节旁的轴突逐渐消失。这与丧失节旁区域和伴随的轴突结构域紊乱相吻合。我们的结果提供了第一个直接的证据,即轴突区域的维持需要淋巴结旁轴突连接的围栏功能。在一起,我们的研究确立了有节理的轴突连接在髓鞘轴突的组织和轴突区域的维持中的核心作用。

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