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肺发育过程中多个间充质谱系的形成和分化受β-连环蛋白信号通路调控。

Formation and differentiation of multiple mesenchymal lineages during lung development is regulated by beta-catenin signaling.

作者信息

De Langhe Stijn P, Carraro Gianni, Tefft Denise, Li Changgong, Xu Xin, Chai Yang, Minoo Parviz, Hajihosseini Mohammad K, Drouin Jacques, Kaartinen Vesa, Bellusci Savério

机构信息

Developmental Biology Program, Department of Surgery, Saban Research Institute of Childrens Hospital Los Angeles, Los Angeles, California, USA.

出版信息

PLoS One. 2008 Jan 30;3(1):e1516. doi: 10.1371/journal.pone.0001516.

Abstract

BACKGROUND

The role of ss-catenin signaling in mesodermal lineage formation and differentiation has been elusive.

METHODOLOGY

To define the role of ss-catenin signaling in these processes, we used a Dermo1(Twist2)(Cre/+) line to target a floxed beta-catenin allele, throughout the embryonic mesenchyme. Strikingly, the Dermo1(Cre/+); beta-catenin(f/-) conditional Knock Out embryos largely phenocopy Pitx1(-/-)/Pitx2(-/-) double knockout embryos, suggesting that ss-catenin signaling in the mesenchyme depends mostly on the PITX family of transcription factors. We have dissected this relationship further in the developing lungs and find that mesenchymal deletion of beta-catenin differentially affects two major mesenchymal lineages. The amplification but not differentiation of Fgf10-expressing parabronchial smooth muscle progenitor cells is drastically reduced. In the angioblast-endothelial lineage, however, only differentiation into mature endothelial cells is impaired.

CONCLUSION

Taken together these findings reveal a hierarchy of gene activity involving ss-catenin and PITX, as important regulators of mesenchymal cell proliferation and differentiation.

摘要

背景

β-连环蛋白信号在中胚层谱系形成和分化中的作用一直不明确。

方法

为了确定β-连环蛋白信号在这些过程中的作用,我们使用Dermo1(Twist2)(Cre / +)系在整个胚胎间充质中靶向一个floxed β-连环蛋白等位基因。令人惊讶的是,Dermo1(Cre / +);β-连环蛋白(f / -)条件性敲除胚胎在很大程度上模拟了Pitx1(-/-)/ Pitx2(-/-)双敲除胚胎,这表明间充质中的β-连环蛋白信号主要依赖于转录因子的PITX家族。我们在发育中的肺中进一步剖析了这种关系,发现β-连环蛋白的间充质缺失对两个主要的间充质谱系有不同的影响。表达Fgf10的副支气管平滑肌祖细胞的扩增而非分化显著减少。然而,在成血管细胞-内皮谱系中,只有向成熟内皮细胞的分化受到损害。

结论

综上所述,这些发现揭示了涉及β-连环蛋白和PITX的基因活性层次结构,它们是间充质细胞增殖和分化的重要调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efa9/2211394/1d74df30e355/pone.0001516.g001.jpg

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