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首页> 外文期刊>Development >The apical ectodermal ridge is a timer for generating distal limb progenitors.
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The apical ectodermal ridge is a timer for generating distal limb progenitors.

机译:顶外胚层是用于产生远端肢体祖细胞的计时器。

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摘要

The apical ectodermal ridge (AER) is a transient embryonic structure essential for the induction, patterning and outgrowth of the vertebrate limb. However, the mechanism of AER function in limb skeletal patterning has remained unclear. In this study, we genetically ablated the AER by conditionally removing FGFR2 function and found that distal limb development failed in mutant mice. We showed that FGFR2 promotes survival of AER cells and interacts with Wnt/beta-catenin signaling during AER maintenance. Interestingly, cell proliferation and survival were not significantly reduced in the distal mesenchyme of mutant limb buds. We established Hoxa13 expression as an early marker of distal limb progenitors and discovered a dynamic morphogenetic process of distal limb development. We found that premature AER loss in mutant limb buds delayed generation of autopod progenitors, which in turn failed to reach a threshold number required to form a normal autopod. Taken together, we have uncovered a novel mechanism,whereby the AER regulates the number of autopod progenitors by determining the onset of their generation.
机译:顶外胚层(AER)是一种短暂的胚胎结构,对于脊椎动物肢体的诱导,模式形成和生长至关重要。然而,AER在肢体骨骼形成中的功能机制仍不清楚。在这项研究中,我们通过有条件地去除FGFR2功能来遗传消融AER,并发现突变小鼠的远端肢体发育失败。我们表明FGFR2促进AER细胞的存活,并在AER维持过程中与Wnt /β-catenin信号传导相互作用。有趣的是,突变体肢芽的远端间充质中细胞增殖和存活没有显着降低。我们建立了Hoxa13表达作为远端肢体祖细胞的早期标记,并发现了远端肢体发育的动态形态发生过程。我们发现突变肢芽中过早的AER损失会延迟自足类祖细胞的生成,而继而未能达到形成正常自足体所需的阈值数量。综上所述,我们发现了一种新颖的机制,从而AER通过确定其生成的时间来调节自足祖细胞的数量。

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