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Floor plate-derived sonic hedgehog regulates glial and ependymal cell fates in the developing spinal cord

机译:源自地板的声波刺猬可调节发育中的脊髓中的神经胶质和室管膜细胞命运

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摘要

Cell fate specification in the CNS is controlled by the secreted morphogen sonic hedgehog (Shh). At spinal cord levels, Shh produced by both the notochord and floor plate (FP) diffuses dorsally to organize patterned gene expression in dividing neural and glial progenitors. Despite the fact that two discrete sources of Shh are involved in this process, the individual contribution of the FP, the only intrinsic source of Shh throughout both neurogenesis and gliogenesis, has not been clearly defined. Here, we have used conditional mutagenesis approaches in mice to selectively inactivate Shh in the FP (ShhFP) while allowing expression to persist in the notochord, which underlies the neural tube during neurogenesis but not gliogenesis. We also inactivated Smo, the common Hh receptor, in neural tube progenitors. Our findings confirm and extend prior studies suggesting an important requirement for ShhFP in specifying oligodendrocyte cell fates via repression of Gli3 in progenitors. Our studies also uncover a connection between embryonic Shh signaling and astrocyte-mediated reactive gliosis in adults, raising the possibility that this pathway is involved in the development of the most common cell type in the CNS. Finally, we find that intrinsic spinal cord Shh signaling is required for the proper formation of the ependymal zone, the epithelial cell lining of the central canal that is also an adult stem cell niche. Together, our studies identify a crucial late embryonic role for ShhFP in regulating the specification and differentiation of glial and epithelial cells in the mouse spinal cord.
机译:中枢神经系统中的细胞命运规范是由分泌的形态发生子声波刺猬(Shh)控制的。在脊髓水平上,由脊索和底板(FP)产生的Shh背向扩散,从而在神经和神经胶质祖细胞的分裂中组织模式化的基因表达。尽管在这个过程中涉及两个离散的Shh来源,但尚未明确定义FP的个体贡献,FP是Shh在整个神经发生和神经胶质发生中唯一的内在来源。在这里,我们已经在小鼠中使用条件诱变方法选择性地使FP中的Shh失活(Shh FP ),同时允许表达持续存在于脊索中,该脊索在神经发生而非胶质发生过程中位于神经管的下方。我们还使神经管祖细胞中的常见Hh受体Smo失活。我们的发现证实并扩展了先前的研究,表明Shh FP 的一个重要要求,即通过抑制祖细胞中的Gli3来确定少突胶质细胞的命运。我们的研究还发现成年人的Shh信号传导与星形胶质细胞介导的反应性神经胶质细胞增生之间存在联系,这增加了该途径参与中枢神经系统最常见细胞类型发育的可能性。最后,我们发现内在的脊髓Shh信号是正常的室管膜区(中央管的上皮细胞内衬,也是成人干细胞的利基)形成所必需的。总之,我们的研究确定了Shh FP 在调节小鼠脊髓中神经胶质和上皮细胞的规格和分化中的关键晚期胚胎作用。

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