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LHX2 Mediates the FGF-to-SHH Regulatory Loop during Limb Development

机译:LHX2在肢体发育过程中介导FGF-SHH调节环

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摘要

During limb development, fibroblast growth factors (Fgfs) govern proximal–distal outgrowth and patterning. FGFs also synchronize developmental patterning between the proximal–distal and anterior–posterior axes by maintaining Sonic hedgehog (Shh) expression in cells of the zone of polarizing activity (ZPA) in the distal posterior mesoderm. Shh, in turn, maintains Fgfs in the apical ectodermal ridge (AER) that caps the distal tip of the limb bud. Crosstalk between Fgf and Shh signaling is critical for patterned limb development, but the mechanisms underlying this feedback loop are not well-characterized. Implantation of Fgf beads in the proximal posterior limb bud can maintain SHH expression in the former ZPA domain (evident 3 h after application), while prolonged exposure (24 h) can induce SHH outside of this domain. Although temporally and spatially disparate, comparative analysis of transcriptome data from these different populations accentuated genes involved in SHH regulation. Comparative analysis identified 25 candidates common to both treatments, with eight linked to SHH expression or function. Furthermore, we demonstrated that LHX2, a LIM Homeodomain transcription factor, is an intermediate in the FGF-mediated regulation of SHH. Our data suggest that LHX2 acts as a competency factor maintaining distal posterior SHH expression subjacent to the AER.
机译:在肢体发育过程中,成纤维细胞生长因子(Fgfs)控制着近端至远端的生长和形态。 FGF还通过在后中胚层远端极化区域(ZPA)的细胞中维持Sonic刺猬(Shh)表达来同步近端-远端轴和前后轴之间的发育模式。 Shh继而将Fgfs维持在顶盖肢芽远端的顶皮外皮(AER)中。 Fgf和Shh信号之间的串扰对于模式化的肢体发育至关重要,但是这种反馈回路的机制尚不十分清楚。在后肢近端芽中植入Fgf珠可以在以前的ZPA域中保持SHH表达(应用后3小时明显),而长时间暴露(24小时)则可以在该域之外诱导SHH。尽管在时间和空间上截然不同,但是来自这些不同人群的转录组数据的比较分析突显了参与SHH调控的基因。比较分析确定了两种治疗方法共有的25种候选药物,其中8种与SHH的表达或功能有关。此外,我们证明了LHX2(一种LIM同源域转录因子)是FGF介导的SHH调节的中间体。我们的数据表明,LHX2可以作为维持远侧后侧SHH在AER下方表达的能力因子。

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