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Gpr177 调节肺血管发育。

Gpr177 regulates pulmonary vasculature development.

机构信息

Department of Biomedical Genetics, University of Rochester Medical Center, Rochester, NY 14642, USA.

出版信息

Development. 2013 Sep;140(17):3589-94. doi: 10.1242/dev.095471. Epub 2013 Jul 24.

Abstract

Establishment of the functional pulmonary vasculature requires intimate interaction between the epithelium and mesenchyme. Previous genetic studies have led to inconsistent conclusions about the contribution of epithelial Wnts to pulmonary vasculature development. This discrepancy is possibly due to the functional redundancy among different Wnts. Here, we use Shh-Cre to conditionally delete Gpr177 (the mouse ortholog of Drosophila Wntless, Wls), a chaperon protein important for the sorting and secretion of Wnt proteins. Deletion of epithelial Gpr177 reduces Wnt signaling activity in both the epithelium and mesenchyme, resulting in severe hemorrhage and abnormal vasculature, accompanied by branching defects and abnormal epithelial differentiation. We then used multiple mouse models to demonstrate that Wnt/β-catenin signaling is not only required for the proliferation and differentiation of mesenchyme, but also is important for the maintenance of smooth muscle cells through the regulation of the transcription factor Kruppel-like factor 2 (Klf2). Together, our studies define a novel mechanism by which epithelial Wnts regulate the normal development and maintenance of pulmonary vasculature. These findings provide insight into the pathobiology of congenital lung diseases, such as alveolar capillary dysplasia (ACD), that have abnormal alveolar development and dysmorphic pulmonary vasculature.

摘要

功能性肺血管的建立需要上皮细胞和间充质之间的密切相互作用。先前的遗传研究导致了关于上皮细胞 Wnts 对肺血管发育的贡献的不一致结论。这种差异可能是由于不同 Wnts 之间的功能冗余。在这里,我们使用 Shh-Cre 条件性删除 Gpr177(果蝇 Wntless 的小鼠同源物,Wls),一种对 Wnt 蛋白的分拣和分泌很重要的伴侣蛋白。上皮细胞 Gpr177 的缺失降低了上皮细胞和间充质中 Wnt 信号活性,导致严重的出血和异常的血管,伴有分支缺陷和异常的上皮分化。然后,我们使用多种小鼠模型证明 Wnt/β-catenin 信号不仅是间充质增殖和分化所必需的,而且通过调节转录因子 Kruppel 样因子 2(Klf2)对平滑肌细胞的维持也很重要。总之,我们的研究定义了一种上皮 Wnts 调节肺血管正常发育和维持的新机制。这些发现为先天性肺疾病(如肺泡毛细血管发育不良,ACD)的病理生物学提供了深入的了解,这些疾病具有异常的肺泡发育和畸形的肺血管。

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