Lange Alexander W, Keiser Angela R, Wells James M, Zorn Aaron M, Whitsett Jeffrey A
Division of Pulmonary Biology, Cincinnati Children's Hospital Medical Center and the University of Cincinnati College of Medicine, Cincinnati, Ohio, United States of America.
PLoS One. 2009 May 27;4(5):e5711. doi: 10.1371/journal.pone.0005711.
The Sry-related high mobility group box transcription factor Sox17 is required for diverse developmental processes including endoderm formation, vascular development, and fetal hematopoietic stem cell maintenance. Expression of Sox17 in mature respiratory epithelial cells causes proliferation and lineage respecification, suggesting that Sox17 can alter adult lung progenitor cell fate. In this paper, we identify mechanisms by which Sox17 influences lung epithelial progenitor cell behavior and reprograms cell fate in the mature respiratory epithelium. Conditional expression of Sox17 in epithelial cells of the adult mouse lung demonstrated that cell cluster formation and respecification of alveolar progenitor cells toward proximal airway lineages were rapidly reversible processes. Prolonged expression of Sox17 caused the ectopic formation of bronchiolar-like structures with diverse respiratory epithelial cell characteristics in alveolar regions of lung. During initiation of progenitor cell behavior, Sox17 induced proliferation and increased the expression of the progenitor cell marker Sca-1 and genes involved in cell cycle progression. Notably, Sox17 enhanced cyclin D1 expression in vivo and activated cyclin D1 promoter activity in vitro. Sox17 decreased the expression of transforming growth factor-beta (TGF-beta)-responsive cell cycle inhibitors in the adult mouse lung, including p15, p21, and p57, and inhibited TGF-beta1-mediated transcriptional responses in vitro. Further, Sox17 interacted with Smad3 and blocked Smad3 DNA binding and transcriptional activity. Together, these data show that a subset of mature respiratory epithelial cells retains remarkable phenotypic plasticity and that Sox17, a gene required for early endoderm formation, activates the cell cycle and reinitiates multipotent progenitor cell behavior in mature lung cells.
与性别决定基因相关的高迁移率族盒转录因子Sox17参与多种发育过程,包括内胚层形成、血管发育以及胎儿造血干细胞维持。Sox17在成熟呼吸道上皮细胞中的表达会导致细胞增殖和谱系重编程,这表明Sox17可以改变成年肺祖细胞的命运。在本文中,我们确定了Sox17影响肺上皮祖细胞行为并在成熟呼吸道上皮中重新编程细胞命运的机制。在成年小鼠肺上皮细胞中条件性表达Sox17表明,细胞簇形成以及肺泡祖细胞向近端气道谱系的重编程是快速可逆的过程。Sox17的长期表达导致肺肺泡区域出现具有多种呼吸道上皮细胞特征的细支气管样结构的异位形成。在祖细胞行为启动期间,Sox17诱导增殖并增加祖细胞标志物Sca-1以及参与细胞周期进程的基因的表达。值得注意的是,Sox17在体内增强细胞周期蛋白D1的表达,并在体外激活细胞周期蛋白D1启动子活性。Sox17降低成年小鼠肺中转化生长因子-β(TGF-β)反应性细胞周期抑制剂的表达,包括p15、p21和p57,并在体外抑制TGF-β1介导的转录反应。此外,Sox17与Smad3相互作用并阻断Smad3的DNA结合和转录活性。总之,这些数据表明,一部分成熟呼吸道上皮细胞保留了显著的表型可塑性,并且早期内胚层形成所需的基因Sox17激活细胞周期并在成熟肺细胞中重新启动多能祖细胞行为。