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The basic helix-loop-helix olig3 establishes the neural plate boundary of the trunk and is necessary for development of the dorsal spinal cord

机译:基本的螺旋-环-螺旋olig3建立了躯干的神经板边界,对于发育背脊髓是必不可少的

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摘要

Olig genes encode a previously unrecognized group of vertebrate-specific basic helix-loop-helix transcription factors. As shown in mice, chickens, and zebrafish, two members of this group, olig1 and olig2, are involved in the differentiation of motoneurons and oligodendrocytes, but nothing is known about the role of the third member, olig3. Here, we show that olig3 plays an essential role in the establishment of the neural crest-lateral neural plate boundary. In zebrafish embryos, morpholino-induced olig3 inactivation dramatically increases the number of neural crest cells, but lateral neural plate fates (interneurons and astrocytes) are missing. Zebrafish swirl mutants that have impaired bone morphogenetic protein signaling and lack neural crest cells display an expanded olig3 expression domain. Moreover, olig3 is up-regulated in mind-bomb mutants lacking the neural crest because of an impaired notch signaling, and olig3 repression in such mutants rescues the neural crest. In addition, olig3 regulates ngn1 and deltaA expression in interneuron precursors. Our results indicate that olig3 has an essential proneural activity in the dorsal spinal cord and cooperates with the Delta/Notch regulatory loop to establish the boundary between the neural crest and the lateral neural plate. Thus, a proper regulation of the olig gene family is essential for the formation of three cell types (oligodendrocytes, astrocytes, and neural crest) that are unique to vertebrates.
机译:寡核苷酸基因编码先前无法识别的一组脊椎动物特异性基本螺旋-环-螺旋转录因子。如小鼠,鸡和斑马鱼所示,该组中的两个成员olig1和olig2参与了运动神经元和少突胶质细胞的分化,但对第三个成员olig3的作用一无所知。在这里,我们显示olig3在神经rest-神经外板边界的建立中起着至关重要的作用。在斑马鱼的胚胎中,吗啉代诱导的olig3失活极大地增加了神经c细胞的数量,但是缺少了侧向神经板的命运(中间神经元和星形胶质细胞)。具有受损的骨形态发生蛋白信号传导和缺乏神经c细胞的斑马鱼旋流突变体显示扩展的olig3表达域。此外,由于缺刻信号转导受损,缺乏神经波峰的思维炸弹突变体中的olig3上调,并且此类突变体中的olig3抑制可拯救神经波峰。另外,olig3调节神经元前体中的ngn1和deltaA表达。我们的研究结果表明,olig3在背脊髓中具有重要的前神经活动,并与Delta / Notch调节环协同作用,在神经rest和神经外侧板之间建立边界。因此,寡核苷酸基因家族的适当调节对于形成脊椎动物独有的三种细胞类型(少突胶质细胞,星形胶质细胞和神经c)至关重要。

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