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Eppur Si Muove: Evidence for an External Granular Layer and Possibly Transit Amplification in the Teleostean Cerebellum

机译:Eppur Si Muove:硬骨小脑外部颗粒层和可能的过境放大的证据

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摘要

The secreted signaling factor Sonic Hedgehog (Shh) acts in the floor plate of the developing vertebrate CNS to promote motoneuron development. In addition, shh has dorsal expression domains in the amniote alar plate (i.e., in isocortex, superior colliculus, and cerebellum). For example, shh expressing Purkinje cells act in transit amplification of external granular layer (EGL) cells of the developing cerebellum. Our previous studies had indicated the presence of an EGL in anamniote zebrafish, but a possible role of shh in the zebrafish cerebellar plate remained elusive. Therefore, we used an existing zebrafish transgenic line Tg(2.4shha-ABC-GFP)sb15; ) to show this gene activity and its cellular localization in the larval zebrafish brain. Clearly, GFP expressing cells occur in larval alar zebrafish brain domains, i.e., optic tectum and cerebellum. Analysis of critical cerebellar cell markers on this transgenic background and a PH3 assay for mitotic cells reveals that Purkinje cells and eurydendroid cells are completely non-overlapping postmitotic cell populations. Furthermore, shh-GFP cells never express Zebrin II or parvalbumin, nor calretinin. They are thus neither Purkinje cells nor calretinin positive migrating rhombic lip derived cells. The shh-GFP cells also never correspond to PH3 positive cells of the ventral cerebellar proliferative zone or the upper rhombic lip-derived EGL. From this marker analysis and the location of shh-GFP cells sandwiched between calretinin positive rhombic lip derived cells and parvalbumin positive Purkinje cells, we conclude that shh-GFP expressing cells qualify as previously reported olig2 positive eurydendroid cells, which are homologous to the amniote deep cerebellar nuclei. We confirm this using double transgenic progeny of shh-GFP and olig2-dsRed zebrafish. Thus, these zebrafish eurydendroid cells may have the same role in transit amplification as Purkinje cells do in amniotes.
机译:分泌的信号传导因子Sonic Hedgehog(Shh)在发育中的脊椎动物CNS的底板中起作用,以促进运动神经元的发育。另外,shh在羊膜的阿拉尔平板中(即,在等皮质,上丘和小脑中)具有背面表达域。例如,表达Purkinje细胞的shRNA在发育中的小脑的外部颗粒层(EGL)细胞的转运扩增中起作用。我们以前的研究表明,在羊膜斑马鱼中存在EGL,但是shh在斑马鱼小脑板中的可能作用仍然难以捉摸。因此,我们使用现有的斑马鱼转基因品系Tg(2.4shha-ABC-GFP)sb15; )以显示该基因活性及其在幼虫斑马鱼脑中的细胞定位。显然,表达GFP的细胞存在于幼虫斑马鱼的大脑区域,即视神经顶盖和小脑。在此转基因背景上对关键小脑细胞标志物的分析以及对有丝分裂细胞的PH3分析表明,浦肯野细胞和类神经胶质细胞是完全不重叠的有丝分裂后细胞群。此外,shh-GFP细胞从不表达Zebrin II或小白蛋白,也不会表达Calretinin。因此,它们既不是浦肯野细胞也不是钙调蛋白阳性迁移的菱形唇来源的阳性细胞。 shh-GFP细胞也永远不会对应于小脑腹侧增生区或上菱形唇来源的EGL的PH3阳性细胞。通过这种标记分析和钙调蛋白阳性菱形唇来源的细胞与小白蛋白阳性浦肯野细胞之间的shh-GFP细胞的位置,我们得出结论,表达shh-GFP的细胞符合先前报道的olig2阳性eurydendroid细胞,这与羊膜深层同源小脑核。我们使用shh-GFP和olig2-dsRed斑马鱼的双转基因后代来证实这一点。因此,这些斑马鱼类神经胶质细胞可能在转运扩增中与浦肯野细胞在羊膜中具有相同的作用。

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