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Wnt5a 和 Fgf 信号的整合在平面细胞极性中协调定向生长和形态发生。

Coordinated directional outgrowth and pattern formation by integration of Wnt5a and Fgf signaling in planar cell polarity.

机构信息

School of Biomedical Sciences, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Pokfulam, Hong Kong, China

Developmental Genetics Section, Genetic Disease Research Branch, National Human Genome Research Institute, NIH, Bethesda, MD 20892, USA.

出版信息

Development. 2018 Apr 13;145(8):dev163824. doi: 10.1242/dev.163824.

Abstract

Embryonic morphogenesis of a complex organism requires proper regulation of patterning and directional growth. Planar cell polarity (PCP) signaling is emerging as a crucial evolutionarily conserved mechanism whereby directional information is conveyed. PCP is thought to be established by global cues, and recent studies have revealed an instructive role of a Wnt signaling gradient in epithelial tissues of both invertebrates and vertebrates. However, it remains unclear whether Wnt/PCP signaling is regulated in a coordinated manner with embryonic patterning during morphogenesis. Here, in mouse developing limbs, we find that apical ectoderm ridge-derived Fgfs required for limb patterning regulate PCP along the proximal-distal axis in a Wnt5a-dependent manner. We demonstrate with genetic evidence that the Wnt5a gradient acts as a global cue that is instructive in establishing PCP in the limb mesenchyme, and that Wnt5a also plays a permissive role to allow Fgf signaling to orient PCP. Our results indicate that limb morphogenesis is regulated by coordination of directional growth and patterning through integration of Wnt5a and Fgf signaling.

摘要

复杂生物体的胚胎形态发生需要正确调节模式形成和定向生长。平面细胞极性 (PCP) 信号转导作为一种重要的进化保守机制,能够传递定向信息。PCP 被认为是通过全局线索建立的,最近的研究揭示了 Wnt 信号梯度在无脊椎动物和脊椎动物的上皮组织中具有指导作用。然而,Wnt/PCP 信号在形态发生过程中是否与胚胎模式形成以协调的方式进行调节仍不清楚。在这里,在发育中的小鼠肢体中,我们发现顶端外胚层脊衍生的 Fgfs 对于肢体模式形成是必需的,它们以 Wnt5a 依赖的方式调节沿近-远轴的 PCP。我们通过遗传证据证明,Wnt5a 梯度作为一个全局线索,在肢体间充质中具有指导 PCP 形成的作用,并且 Wnt5a 还发挥允许 Fgf 信号定向 PCP 的许可作用。我们的结果表明,通过整合 Wnt5a 和 Fgf 信号,方向性生长和模式形成的协调调节了肢体形态发生。

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