Frank David B, Peng Tien, Zepp Jarod A, Snitow Melinda, Vincent Tiffaney L, Penkala Ian J, Cui Zheng, Herriges Michael J, Morley Michael P, Zhou Su, Lu Min Min, Morrisey Edward E
Division of Pediatric Cardiology, Department of Pediatrics, The Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.
Division of Pulmonary and Critical Care Medicine, Department of Medicine, University of California, San Francisco, San Francisco, CA 94117, USA.
Cell Rep. 2016 Nov 22;17(9):2312-2325. doi: 10.1016/j.celrep.2016.11.001.
Alveologenesis is the culmination of lung development and involves the correct temporal and spatial signals to generate the delicate gas exchange interface required for respiration. Using a Wnt-signaling reporter system, we demonstrate the emergence of a Wnt-responsive alveolar epithelial cell sublineage, which arises during alveologenesis, called the axin2+ alveolar type 2 cell, or AT2. The number of AT2 cells increases substantially during late lung development, correlating with a wave of Wnt signaling during alveologenesis. Transcriptome analysis, in vivo clonal analysis, and ex vivo lung organoid assays reveal that AT2s promote enhanced AT2 cell growth during generation of the alveolus. Activating Wnt signaling results in the expansion of AT2s, whereas inhibition of Wnt signaling inhibits AT2 cell development and shunts alveolar epithelial development toward the alveolar type 1 cell lineage. These findings reveal a wave of Wnt-dependent AT2 expansion required for lung alveologenesis and maturation.
肺泡形成是肺发育的 culmination,涉及正确的时空信号以生成呼吸所需的精细气体交换界面。使用Wnt信号报告系统,我们证明了一种Wnt反应性肺泡上皮细胞亚谱系的出现,它在肺泡形成过程中产生,称为axin2+肺泡2型细胞,或AT2。在肺发育后期,AT2细胞的数量大幅增加,这与肺泡形成过程中的一波Wnt信号相关。转录组分析、体内克隆分析和体外肺类器官试验表明,AT2细胞在肺泡生成过程中促进了AT2细胞的生长增强。激活Wnt信号导致AT2细胞扩张,而抑制Wnt信号则抑制AT2细胞发育,并使肺泡上皮发育转向肺泡1型细胞谱系。这些发现揭示了肺泡形成和成熟所需的一波Wnt依赖性AT2细胞扩张。 (注:“culmination”未准确翻译,可根据上下文灵活处理,比如“关键阶段”等)