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Sfrp1 and Sfrp2 regulate anteroposterior axis elongation and somite segmentation during mouse embryogenesis.

机译:Sfrp1和Sfrp2调节小鼠胚胎发生过程中前后轴延长和体节分割。

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Regulation of Wnt signaling is essential for embryonic patterning. Sfrps are secreted Wnt antagonists that directly interact with the Wnt ligand to inhibit signaling. Here, we show that Sfrp1 and Sfrp2 are required for anteroposterior (AP) axis elongation and somitogenesis in the thoracic region during mouse embryogenesis. Double homozygous mutations in Sfrp1 and Sfrp2 lead to severe shortening of the thoracic region. By contrast, a homozygous mutation in one or the other exerts no effect on embryogenesis, indicating that Sfrp1 and Sfrp2 are functionally redundant. The defect of a shortened thoracic region appears to be the consequence of AP axis reduction and incomplete somite segmentation. The reduction in the AP axis is partially due to abnormalities in cell migration of pre-somitic mesoderm from the end of gastrulation. Aberrant somite segmentation is associated with altered oscillations of Notch signaling, as evidenced by abnormal Lfng and Hes7 expression during somitogenesis in the thoracic region. This study suggests that Wnt regulation by Sfrp1 and Sfrp2 is required for embryonic patterning.
机译:Wnt信号的调节对于胚胎模式至关重要。 Sfrps是分泌的Wnt拮抗剂,可直接与Wnt配体相互作用以抑制信号传导。在这里,我们显示Sfrp1和Sfrp2是小鼠胚胎发生过程中胸区前后位(AP)轴延长和体发生所必需的。 Sfrp1和Sfrp2中的双重纯合突变导致胸部区域严重缩短。相反,一个或另一个的纯合突变对胚胎发生没有影响,表明Sfrp1和Sfrp2在功能上是多余的。缩短的胸腔区域的缺陷似乎是AP轴减少和不完全的somite分割的结果。 AP轴的减少部分归因于从节胃末期开始的早体中胚层的细胞迁移异常。异常的somite分割与Notch信号的振荡改变有关,如在胸腔区域发生体形成过程中Lfng和Hes7表达异常所证明。这项研究表明,胚胎构图需要Sfrp1和Sfrp2调控Wnt。

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