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Hoxa2介导的间充质模式形成需要阻断Fgf依赖的Ptx1激活。

Mesenchymal patterning by Hoxa2 requires blocking Fgf-dependent activation of Ptx1.

作者信息

Bobola Nicoletta, Carapuço Marta, Ohnemus Sabine, Kanzler Benoît, Leibbrandt Andreas, Neubüser Annette, Drouin Jacques, Mallo Moisés

机构信息

Department of Developmental Biology, Max-Planck Institute of Immunobiology, Freiburg, Germany.

出版信息

Development. 2003 Aug;130(15):3403-14. doi: 10.1242/dev.00554.

Abstract

Hox genes are known key regulators of embryonic segmental identity, but little is known about the mechanisms of their action. To address this issue, we have analyzed how Hoxa2 specifies segmental identity in the second branchial arch. Using a subtraction approach, we found that Ptx1 was upregulated in the second arch mesenchyme of Hoxa2 mutants. This upregulation has functional significance because, in Hoxa2(-/-);Ptx1(-/-) embryos, the Hoxa2(-/-) phenotype is partially reversed. Hoxa2 interferes with the Ptx1 activating process, which is dependent on Fgf signals from the epithelium. Consistently, Lhx6, another target of Fgf8 signaling, is also upregulated in the Hoxa2(-/-) second arch mesenchyme. Our findings have important implications for the understanding of developmental processes in the branchial area and suggest a novel mechanism for mesenchymal patterning by Hox genes that acts to define the competence of mesenchymal cells to respond to skeletogenic signals.

摘要

Hox基因是已知的胚胎节段身份的关键调节因子,但其作用机制却知之甚少。为了解决这个问题,我们分析了Hoxa2如何在第二鳃弓中确定节段身份。通过减法方法,我们发现Ptx1在Hoxa2突变体的第二弓间充质中上调。这种上调具有功能意义,因为在Hoxa2(-/-);Ptx1(-/-)胚胎中,Hoxa2(-/-)表型部分得到逆转。Hoxa2干扰Ptx1的激活过程,该过程依赖于来自上皮的Fgf信号。一致地,Fgf8信号的另一个靶标Lhx6在Hoxa2(-/-)第二弓间充质中也上调。我们的发现对于理解鳃区的发育过程具有重要意义,并提出了一种由Hox基因进行间充质模式形成的新机制,该机制用于定义间充质细胞对骨骼生成信号作出反应的能力。

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