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首页> 外文期刊>Development >A biphasic role of non-canonical Wnt16 signaling during early anterior-posterior patterning and morphogenesis of the sea urchin embryo
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A biphasic role of non-canonical Wnt16 signaling during early anterior-posterior patterning and morphogenesis of the sea urchin embryo

机译:非规范Wnt16信号在早期前后图案化和海胆胚胎的形态发生期间的双色作用

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摘要

A Wnt signaling network governs early anterior-posterior (AP) specification and patterning of the deuterostome sea urchin embryo. We have previously shown that non-canonical Fzl1/2/7 signaling antagonizes the progressive posterior-to-anterior downregulation of the anterior neuroectoderm (ANE) gene regulatory network (GRN) by canonical Wnt/beta-catenin and non-canonical Wnt1/Wnt8-Fzl5/8-JNK signaling. This study focuses on the non-canonical function of the Wnt16 ligand during early AP specification and patterning. Maternally supplied wnt16 is expressed ubiquitously during cleavage and zygotic wnt16 expression is concentrated in the endoderm/mesoderm beginning at mid-blastula stage. Wnt16 antagonizes the ANE restriction mechanism and this activity depends on a functional Fzl1/2/7 receptor. Our results also show that zygotic wnt16 expression depends on both Fzl5/8 and Wnt/beta-catenin signaling. Furthermore, Wnt16 is necessary for the activation and/or maintenance of key regulatory endoderm/mesoderm genes and is essential for gastrulation. Together, our data show that Wnt16 has two functions during early AP specification and patterning: (1) an initial role activating the Fzl1/2/7 pathway that antagonizes the ANE restriction mechanism; and (2) a subsequent function in activating key endoderm GRN factors and the morphogenetic movements of gastrulation.
机译:WNT信令网络治理早期前后(AP)规格和氘浮蛋白酶海胆胚胎的图案化。我们之前已经表明,非规范的FZL1 / 2/7信号传导拮抗典型神经分区(ANE)基因调节网络(GRN)的渐进式后脑脊液(GRN)通过规范WNT /β-连环蛋白和非规范WNT1 / WNT8 -fzl5 / 8-JNK信令。本研究侧重于早期AP规格和图案化期间Wnt16配体的非规范功能。在裂解期间,在裂解期间普遍表达母研磨的Wnt16,并且在中袋阶段开始浓缩在内胚层/中胚层中的Zygotic wnt16表达。 WNT16拮抗ANE限制机制,并且该活性取决于功能性FZL1 / 2/7受体。我们的结果还表明,Zygotic WNT16表达依赖于FZL5 / 8和WNT /β-Catenin信号传导。此外,WNT16对于激活和/或维持关键调节内胚层/中胚层基因是必要的,并且对于脱气至关重要。我们的数据显示,WNT16在早期的AP规范和图案中有两个功能:(1)激活拮抗ANE限制机制的FZL1 / 2/7途径的初始作用; (2)随后在激活关键的Endoderm GRN因子和混血的形态发生运动方面的函数。

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