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Sonic hedgehog is a polarized signal for motor neuron regeneration in adult zebrafish

机译:sonic hedgehog是成年斑马鱼运动神经元再生的极化信号

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摘要

In contrast to mammals, the spinal cord of adult zebrafish has the capacity to reinitiate generation of motor neurons after a lesion. Here we show that genes involved in motor neuron development, i.e., the ventral morphogen sonic hedgehog a (shha), as well as the transcription factors nkx6.1 and pax6, together with a Tg(olig2:egfp) transgene, are expressed in the unlesioned spinal cord of adult zebrafish. Expression is found in ependymoradial glial cells lining the central canal in ventrodorsal positions that match expression domains of these genes in the developing neural tube. Specifically, Tg(olig2:egfp)(+) ependymoradial glial cells, the adult motor neuron progenitors (pMNs), coexpress Nkx6.1 and Pax6, thus defining an adult pMN-like zone. shha is expressed in distinct ventral ependymoradial glial cells. After a lesion, expression of all these genes is strongly increased, while relative spatial expression domains are maintained. In addition, expression of the hedgehog (hh) receptors patched1 and smoothened becomes detectable in ependymoradial glial cells including those of the pMN-like zone. Cyclopamine-induced knock down of hh signaling significantly reduces ventricular proliferation and motor neuron regeneration. Expression of indicator genes for the FGF and retinoic acid signaling pathways was also increased in the lesioned spinal cord. This suggests that a subclass of ependymoradial glial cells retain their identity as motor neuron progenitors into adulthood and are capable of reacting to a sonic hedgehog signal and potentially other developmental signals with motor neuron regeneration after a spinal lesion.
机译:与哺乳动物相反,成年斑马鱼的脊髓具有在损伤后重新启动运动神经元生成的能力。在这里,我们显示了参与运动神经元发育的基因,即腹侧形态发生子声波刺猬a(shha),以及转录因子nkx6.1和pax6,以及Tg(olig2:egfp)转基因,均在成年斑马鱼的无损伤脊髓。在与中央管中的中央管内衬的室管radi神经胶质细胞中发现了表达,这些细胞与这些基因在发育中的神经管中的表达域相匹配。具体来说,Tg(olig2:egfp)(+)mo上神经胶质细胞,成年运动神经元祖细胞(pMNs)共表达Nkx6.1和Pax6,从而定义了成年pMN样区域。 shha在不同的腹侧pen上神经胶质细胞中表达。病变后,所有这些基因的表达都大大增加,同时保持相对的空间表达域。此外,在包括pMN样区在内的momo神经胶质细胞中可检测到修补和平滑化的hedgehog(hh)受体的表达。环巴胺诱导的hh信号的降低显着降低了心室增殖和运动神经元的再生。在病变脊髓中,FGF和视黄酸信号通路的指示基因表达也增加。这表明,mo上神经胶质细胞的一个亚类保留了其作为运动神经元祖细胞进入成年期的身份,并能够在脊髓损伤后对声波刺猬信号和潜在的其他发育信号与运动神经元再生起反应。

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