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Tsukushi controls ectodermal patterning and neural crest specification in Xenopus by direct regulation of BMP4 and X-delta-1 activity

机译:Tsukushi通过直接调节BMP4和X-delta-1活性来控制非洲爪蟾的外胚层模式和神经c规范

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摘要

In Xenopus, ectodermal patterning depends on a mediolateral gradient of BMP signaling, higher in the epidermis and lower in the neuroectoderm. Neural crest cells are specified at the border between the neural plate and the epidermis, at intermediate levels of BMP signaling. We recently described a novel secreted protein, Tsukushi (TSK), which works as a BMP antagonist during chick gastrulation. Here, we report on the Xenopus TSK gene (X-TSK), and show that it is involved in neural crest specification. X-TSK expression accumulates after gastrulation at the anterior-lateral edges of the neural plate, including the presumptive neural crest region. In gain-of-function experiments, X-TSK can strongly enhance neural crest specification by the dorsolateral mesoderm or X-Wnt8 in ectodermal explants, while the electroporation of X-TSK mRNA in the lateral ectoderm of embryos after gastrulation can induce the expression of neural crest markers in vivo. By contrast, depletion of X-TSK in explants or embryos impairs neural crest specification. Similarly to its chick homolog, X-TSK works as a BMP antagonist by direct binding to BMP4. However, X-TSK can also indirectly regulate BMP4 mRNA expression at the neural plate border via modulation of the Delta-Notch signaling pathway. We show that X-TSK directly binds to the extracellular region of X-delta-1, and modulates Delta-dependent Notch activity. We propose that X-TSK plays a key role in neural crest formation by directly regulating BMP and Delta activities at the boundary between the neural and the non-neural ectoderm.
机译:在非洲爪蟾中,外胚层模式取决于BMP信号的中外侧梯度,在表皮中较高而在神经外胚层中较低。神经c细胞被指定在神经板和表皮之间的边界处,处于BMP信号传导的中间水平。我们最近描述了一种新型的分泌蛋白Tsukushi(TSK),它在雏鸡胃泌尿过程中作为BMP拮抗剂。在这里,我们报告非洲爪蟾TSK基因(X​​-TSK),并表明它参与神经c规范。 X-TSK表达在消化后在神经板的前外侧边缘(包括推测的神经c区域)累积。在功能获得实验中,X-TSK可以通过外胚层外胚层的背外侧中胚层或X-Wnt8强烈增强神经rest的规格,而X-TSK mRNA在胚化后胚胎的外侧外胚层中的电穿孔可以诱导胚泡的表达。体内神经c标记。相反,外植体或胚胎中X-TSK的消耗会损害神经c的规格。 X-TSK与它的雏鸡同源物相似,通过直接结合BMP4充当BMP拮抗剂。但是,X-TSK还可以通过调节Delta-Notch信号通路间接调节神经板边界处BMP4 mRNA的表达。我们显示X-TSK直接绑定到X-delta-1的细胞外区域,并调节依赖Delta的Notch活性。我们提出,X-TSK通过直接调节神经和非神经外胚层之间的边界处的BMP和Delta活性,在神经c形成中起关键作用。

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