首页> 外文期刊>Development >Neuroepithelial cells require fucosylated glycans to guide the migration of vagus motor neuron progenitors in the developing zebrafish hindbrain.
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Neuroepithelial cells require fucosylated glycans to guide the migration of vagus motor neuron progenitors in the developing zebrafish hindbrain.

机译:神经上皮细胞需要岩藻糖基化聚糖来指导迷走运动神经元祖细胞在发育中的斑马鱼后脑中的迁移。

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The molecular mechanisms by which neurons migrate and accumulate to form the neural layers and nuclei remain unclear. The formation of vagus motor nuclei in zebrafish embryos is an ideal model system in which to address this issue because of the transparency of the embryos and the availability of established genetic and molecular biological techniques. To determine the genes required for the formation of the vagus motor nuclei, we performed N-ethyl-N-nitrosourea-based mutant screening using a zebrafish line that expresses green fluorescent protein in the motor neurons. In wild-type embryos, the vagus motor neuron progenitors are born in the ventral ventricular zone, then migrate tangentially in the dorsolateral direction, forming the nuclei. However, in towhead (twd(rw685)) mutant embryos, the vagus motor neuron progenitors stray medially away from the normal migratory pathway and fail to stop in the right location. The twd(rw685) mutant has a defect in the GDP-mannose 4,6 dehydratase (gmds) gene, which encodes a key enzyme in the fucosylation pathway. Levels of fucosylated glycans were markedly and specifically reduced in twd(rw685) mutant embryos. Cell transplantation analysis revealed that GMDS is not essential in the vagus motor neuron progenitors for correct formation of the vagus motor nuclei, but is required in the neuroepithelial cells that surround the progenitors. Together, these findings suggest that fucosylated glycans expressed in neuroepithelial cells are required to guide the migration of vagus motor neuron progenitors.
机译:神经元迁移和积累形成神经层和细胞核的分子机制仍不清楚。斑马鱼胚胎中迷走神经运动核的形成是理想的模型系统,其中由于胚胎的透明性以及已建立的遗传和分子生​​物学技术的存在,可以解决这个问题。为了确定迷走神经运动核形成所需的基因,我们使用斑马鱼品系在运动神经元中表达绿色荧光蛋白,进行了基于N-乙基-N-亚硝基脲的突变筛选。在野生型胚胎中,迷走运动神经元祖细胞出生于腹侧心室区,然后沿背外侧切向迁移,形成核。但是,在双头(twd(rw685))突变体胚胎中,迷走神经运动神经元祖细胞偏离正常的迁移途径而向内侧偏离,无法在正确的位置停下来。 twd(rw685)突变体的GDP-甘露糖4,6脱水酶(gmds)基因有缺陷,该基因编码岩藻糖基化途径中的关键酶。在twd(rw685)突变体胚胎中,岩藻糖基化聚糖的水平显着降低。细胞移植分析表明,迷走神经运动神经元祖细胞中GMDS对于迷走运动神经核的正确形成不是必不可少的,但围绕祖细胞的神经上皮细胞却需要GMDS。在一起,这些发现表明在神经上皮细胞中表达的岩藻糖基化聚糖是指导迷走运动神经元祖细胞迁移的必要条件。

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