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在肺发育过程中,Fgf10的剂量对于上皮细胞祖细胞的扩增以及多个间充质谱系的形成至关重要。

Fgf10 dosage is critical for the amplification of epithelial cell progenitors and for the formation of multiple mesenchymal lineages during lung development.

作者信息

Ramasamy Suresh K, Mailleux Arnaud A, Gupte Varsha V, Mata Francisca, Sala Frédéric G, Veltmaat Jacqueline M, Del Moral Pierre M, De Langhe Stijn, Parsa Sara, Kelly Lisa K, Kelly Robert, Shia Wei, Keshet Eli, Minoo Parviz, Warburton David, Bellusci Savério

机构信息

Developmental Biology Program, Saban Research Institute of Childrens Hospital Los Angeles, Los Angeles, CA 90027, USA.

出版信息

Dev Biol. 2007 Jul 15;307(2):237-47. doi: 10.1016/j.ydbio.2007.04.033. Epub 2007 May 3.

Abstract

The key role played by Fgf10 during early lung development is clearly illustrated in Fgf10 knockout mice, which exhibit lung agenesis. However, Fgf10 is continuously expressed throughout lung development suggesting extended as well as additional roles for FGF10 at later stages of lung organogenesis. We previously reported that the enhancer trap Mlcv1v-nLacZ-24 transgenic mouse strain functions as a reporter for Fgf10 expression and displays decreased endogenous Fgf10 expression. In this paper, we have generated an allelic series to determine the impact of Fgf10 dosage on lung development. We report that 80% of the newborn Fgf10 hypomorphic mice die within 24 h of birth due to respiratory failure. These mutant mouse lungs display severe hypoplasia, dilation of the distal airways and large hemorrhagic areas. Epithelial differentiation and proliferation studies indicate a specific decrease in TTF1 and SP-B expressing cells correlating with reduced epithelial cell proliferation and associated with a decrease in activation of the canonical Wnt signaling in the epithelium. Analysis of vascular development shows a reduction in PECAM expression at E14.5, which is associated with a simplification of the vascular tree at E18.5. We also show a decrease in alpha-SMA expression in the respiratory airway suggesting defective smooth muscle cell formation. At the molecular level, these defects are associated with decrease in Vegfa and Pdgfa expression likely resulting from the decrease of the epithelial/mesenchymal ratio in the Fgf10 hypomorphic lungs. Thus, our results indicate that FGF10 plays a pivotal role in maintaining epithelial progenitor cell proliferation as well as coordinating alveolar smooth muscle cell formation and vascular development.

摘要

Fgf10在肺早期发育过程中所起的关键作用在Fgf10基因敲除小鼠中得到了清晰体现,这些小鼠表现出肺发育不全。然而,Fgf10在整个肺发育过程中持续表达,这表明FGF10在肺器官发生的后期阶段具有扩展的以及额外的作用。我们之前报道过,增强子捕获Mlcv1v - nLacZ - 24转基因小鼠品系可作为Fgf10表达的报告基因,并显示出内源性Fgf10表达降低。在本文中,我们构建了一系列等位基因来确定Fgf10剂量对肺发育的影响。我们报告称,80%的新生Fgf10低表达小鼠在出生后24小时内死于呼吸衰竭。这些突变小鼠的肺表现出严重发育不全、远端气道扩张和大面积出血区域。上皮分化和增殖研究表明,表达TTF1和SP - B的细胞特异性减少,这与上皮细胞增殖减少相关,并与上皮中经典Wnt信号激活的减少有关。血管发育分析显示,在E14.5时PECAM表达降低,这与E18.5时血管树的简化有关。我们还发现呼吸道中α - SMA表达降低,提示平滑肌细胞形成存在缺陷。在分子水平上,这些缺陷与Vegfa和Pdgfa表达降低有关,这可能是由于Fgf10低表达肺中上皮/间充质比例降低所致。因此,我们的结果表明,FGF10在维持上皮祖细胞增殖以及协调肺泡平滑肌细胞形成和血管发育方面起着关键作用。

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