首页> 美国卫生研究院文献>The Journal of Neuroscience >Sensory Axon-Derived Neuregulin-1 Is Required for Axoglial Signaling and Normal Sensory Function But Not for Long-Term Axon Maintenance
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Sensory Axon-Derived Neuregulin-1 Is Required for Axoglial Signaling and Normal Sensory Function But Not for Long-Term Axon Maintenance

机译:轴突信号和正常的感觉功能需要感觉轴突衍生的神经调节蛋白-1但对于长期轴突维持则不需要

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摘要

Neuregulin-1 has a key role in mediating signaling between axons and Schwann cells during development. A limitation to studying its role in adulthood is the embryonic lethality of global Nrg1 gene deletion. We used the Cre-loxP system to generate transgenic mice in which neuregulin-1 is conditionally ablated in the majority of small-diameter and a proportion of large-diameter sensory neurons that have axons conducting in the C- and Aδ-fiber range, respectively. Sensory neuron-specific neuregulin-1 ablation resulted in abnormally large Remak bundles with axons clustered in “polyaxonal” pockets. The total number of axons in the sural nerve was unchanged, but a greater proportion was unmyelinated. In addition, we observed large-diameter axons that were in a 1:1 relationship with Schwann cells, surrounded by a basal lamina but not myelinated. There was no evidence of DRG or Schwann cell death; the markers of different DRG cell populations and cutaneous innervation were unchanged. These anatomical changes were reflected in a slowing of conduction velocity at the lower end of the A-fiber conduction velocity range and a new population of more rapidly conducting C-fibers that are likely to represent large-diameter axons that have failed to myelinate. Conditional neuregulin-1 ablation resulted in a reduced sensitivity to noxious mechanical stimuli. These findings emphasize the importance of neuregulin-1 in mediating the signaling between axons and both myelinating and nonmyelinating Schwann cells required for normal sensory function. Sensory neuronal survival and axonal maintenance, however, are not dependent on axon-derived neuregulin-1 signaling in adulthood.
机译:在发育过程中,神经调节蛋白1在介导轴突和雪旺细胞之间的信号传导中起关键作用。研究其在成年期中的作用的局限性是全球Nrg1基因缺失的胚胎致死率。我们使用Cre-loxP系统生成转基因小鼠,其中在大多数小直径和一部分大直径感觉神经元中有条件地消融了neuregulin-1,这些神经元的轴突分别在C和Aδ纤维范围内传导。 。感觉神经元特异性神经调节蛋白-1消融导致异常大的Remak束,轴突聚集在“多轴突”袋中。腓肠神经的轴突总数没有变化,但大部分是无髓的。此外,我们观察到大直径的轴突与雪旺氏细胞呈1:1关系,周围环绕着基底层,但没有髓鞘。没有证据表明DRG或雪旺氏细胞死亡。不同DRG细胞群和皮肤神经支配的标志物未改变。这些解剖学变化反映在A纤维传导速度范围下端的传导速度减慢和新的更快传导的C纤维群体中,这些新的C纤维很可能代表了未发生髓鞘变性的大直径轴突。有条件的neuregulin-1消融导致对有害机械刺激的敏感性降低。这些发现强调了神经调节蛋白1在介导轴突与正常感觉功能所需的髓鞘和非髓鞘雪旺细胞之间的信号传导中的重要性。然而,感觉神经元存活和轴突维持在成年期不依赖于轴突衍生的neuregulin-1信号传导。

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