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SNW1 Is a Critical Regulator of Spatial BMP Activity Neural Plate Border Formation and Neural Crest Specification in Vertebrate Embryos

机译:SNW1是椎骨胚胎中空间BMP活性神经板边界形成和神经C规范的关键调节剂

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摘要

Bone morphogenetic protein (BMP) gradients provide positional information to direct cell fate specification, such as patterning of the vertebrate ectoderm into neural, neural crest, and epidermal tissues, with precise borders segregating these domains. However, little is known about how BMP activity is regulated spatially and temporally during vertebrate development to contribute to embryonic patterning, and more specifically to neural crest formation. Through a large-scale in vivo functional screen in Xenopus for neural crest fate, we identified an essential regulator of BMP activity, SNW1. SNW1 is a nuclear protein known to regulate gene expression. Using antisense morpholinos to deplete SNW1 protein in both Xenopus and zebrafish embryos, we demonstrate that dorsally expressed SNW1 is required for neural crest specification, and this is independent of mesoderm formation and gastrulation morphogenetic movements. By exploiting a combination of immunostaining for phosphorylated Smad1 in Xenopus embryos and a BMP-dependent reporter transgenic zebrafish line, we show that SNW1 regulates a specific domain of BMP activity in the dorsal ectoderm at the neural plate border at post-gastrula stages. We use double in situ hybridizations and immunofluorescence to show how this domain of BMP activity is spatially positioned relative to the neural crest domain and that of SNW1 expression. Further in vivo and in vitro assays using cell culture and tissue explants allow us to conclude that SNW1 acts upstream of the BMP receptors. Finally, we show that the requirement of SNW1 for neural crest specification is through its ability to regulate BMP activity, as we demonstrate that targeted overexpression of BMP to the neural plate border is sufficient to restore neural crest formation in Xenopus SNW1 morphants. We conclude that through its ability to regulate a specific domain of BMP activity in the vertebrate embryo, SNW1 is a critical regulator of neural plate border formation and thus neural crest specification.
机译:骨形态发生蛋白(BMP)梯度可提供位置信息,以指导细胞命运的确定,例如将脊椎动物外胚层图案化为神经,神经neural和表皮组织,并以精确的边界将这些域隔离开。但是,关于脊椎动物发育过程中BMP活性如何在空间和时间上调节以促进胚胎形成,尤其是对神经c形成的作用,知之甚少。通过对非洲爪蟾命运的大型体内功能筛查,我们确定了BMP活性的重要调节剂SNW1。 SNW1是已知调节基因表达的核蛋白。使用反义吗啉代以耗尽非洲爪蟾和斑马鱼胚胎中的SNW1蛋白,我们证明背expressed SNW1是神经c规范所必需的,而这与中胚层形成和胃形成形态发生运动无关。通过利用对非洲爪蟾胚胎中磷酸化Smad1的免疫染色和依赖BMP的记者转基因斑马鱼品系的组合,我们显示SNW1调节了胃后阶段神经板边界背外胚层中BMP活性的特定域。我们使用双原位杂交和免疫荧光来显示BMP活动的此域如何相对于神经c域和SNW1表达在空间上定位。使用细胞培养和组织外植体的进一步体内和体外测定使我们得出结论,SNW1在BMP受体上游起作用。最后,我们证明SNW1对神经c规范的要求是通过其调节BMP活性的能力,因为我们证明BMP有针对性地向神经板边界过度表达足以恢复爪蟾SNW1 morphant中的神经rest形成。我们得出结论,SNW1通过调节脊椎动物胚胎中BMP活性的特定域的能力,是神经板边界形成和神经rest规范的关键调节剂。

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