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Two lineage boundaries coordinate vertebrate apical ectodermal ridge formation

机译:两个谱系边界协调脊椎动物的根尖外胚层脊形成

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摘要

Proximal–distal outgrowth of the vertebrate limb bud is regulated by the apical ectodermal ridge (AER), which forms at an invariant position along the dorsal–ventral (D/V) axis of the embryo. We have studied the genetic and cellular events that regulate AER formation in the mouse. In contrast to implications from previous studies in chick, we identified two distinct lineage boundaries in mouse ectoderm prior to limb bud outgrowth using a Cre/loxP-based fate-mapping approach and a novel retroviral cell-labeling technique. One border is transient and at the limit of expression of the ventral gene En1, which corresponds to the D/V midline of the AER, and the second border corresponds to the dorsal AER margin. Labeling of AER precursors using an inducible Cre showed that not all cells that initially express AER genes form the AER, indicating that signaling is required to maintain an AER phenotype. Misexpression of En1 at moderate levels specifically in the dorsal AER of transgenic mice was found to produce dorsally shifted AER fragments, whereas high levels of En1 abolished AER formation. In both cases, the dorsal gene Wnt7a was repressed in cells adjacent to the En1-expressing cells, demonstrating that signaling regulated by EN1 occurs across the D/V border. Finally, fate mapping of AER domains in these mutants showed that En1 plays a part in positioning and maintaining the two lineage borders.
机译:脊椎动物四肢芽的近端-远端生长受顶角外胚层脊(AER)的调节,该尖端沿着胚背-腹(D / V)轴的不变位置形成。我们研究了调节小鼠AER形成的遗传和细胞事件。与先前对雏鸡的研究相反,我们使用基于Cre / loxP的命运定位方法和新型逆转录病毒细胞标记技术,在肢芽萌出之前在小鼠外胚层中鉴定出两个不同的谱系边界。一个边界是瞬时的,并且在腹侧基因En1的表达极限处,其对应于AER的D / V中线,第二个边界对应于背侧AER边缘。使用诱导型Cre标记AER前体表明并非所有最初表达AER基因的细胞都形成AER,这表明维持AER表型需要信号传导。发现En1在中等水平的过表达,特别是在转基因小鼠的背侧AER中的错误表达会产生背侧移位的AER片段,而高水平的En1则消除了AER的形成。在这两种情况下,背侧基因Wnt7a在与表达En1的细胞相邻的细胞中均受到抑制,表明在D / V边界上发生了由EN1调控的信号。最后,这些突变体中AER域的命运定位表明En1在定位和维持两个谱系边界中发挥了作用。

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