首页> 外文期刊>Genesis: the journal of genetics and development >Sfrp1, Sfrp2, and Sfrp5 regulate the Wnt/beta-catenin and the planar cell polarity pathways during early trunk formation in mouse.
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Sfrp1, Sfrp2, and Sfrp5 regulate the Wnt/beta-catenin and the planar cell polarity pathways during early trunk formation in mouse.

机译:Sfrp1,Sfrp2和Sfrp5在小鼠早期躯干形成过程中调节Wnt /β-catenin和平面细胞极性途径。

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Sfrp is a secreted Wnt antagonist that directly interacts with Wnt ligand. We show here that inactivation of Sfrp1, Sfrp2, and Sfrp5 leads to fused somites formation in early-somite mouse embryos, simultaneously resulting in defective convergent extension (CE), which causes severe shortening of the anteroposterior axis. These observations indicate the redundant roles of Sfrp1, Sfrp2, and Sfrp5 in early trunk formation. The roles of the Sfrps were genetically distinguished in terms of the regulation of Wnt pathways. Genetic analysis combining Sfrps mutants and Loop-tail mice revealed the involvement of Sfrps in CE through the regulation of the planar cell polarity pathway. Furthermore, Dkk1-deficient embryos carrying Sfrp1 homozygous and Sfrp2 heterozygous mutations display irregular somites and indistinct intersomitic boundaries, which indicates that Sfrps-mediated inhibition of the Wnt/beta-catenin pathway is necessary for somitogenesis. Our results suggest that Sfrps regulation of the canonical and noncanonical pathways is essential for proper trunk formation.
机译:Sfrp是一种与Wnt配体直接相互作用的分泌型Wnt拮抗剂。我们在这里显示,Sfrp1,Sfrp2和Sfrp5的失活会导致早期体贴小鼠胚胎中融合的节状体形成,同时导致有缺陷的会聚延伸(CE),这会导致前后轴严重缩短。这些观察结果表明Sfrp1,Sfrp2和Sfrp5在早期树干形成中具有冗余作用。 Sfrps的作用在遗传上根据Wnt途径的调节而有所区别。结合Sfrps突变体和Loop-tail小鼠的遗传分析显示,Sfrps通过调控平面细胞极性途径参与了CE。此外,携带Sfrp1纯合子和Sfrp2杂合子突变的Dkk1缺陷型胚胎显示不规则的子节和模糊的交界边界,这表明Sfrps介导的Wnt /β-catenin途径抑制是必需的。我们的研究结果表明,规范常规和非常规途径的Sfrps调节对于适当的躯干形成至关重要。

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