Park Kwon-Sik, Wells James M, Zorn Aaron M, Wert Susan E, Whitsett Jeffrey A
Division of Pulmonary Biology, Cincinnati Children's Hospital Medical Center and University of Cincinnati College of Medicine, Cincinnati, OH 45229-3039, USA.
Dev Biol. 2006 Jun 1;294(1):192-202. doi: 10.1016/j.ydbio.2006.02.038. Epub 2006 Mar 30.
The Sry-related HMG box transcription factor, Sox17, is required for formation of definitive endoderm that gives rise to various organs, including thyroid, lung, liver, pancreas, and intestine. While expressed at high levels in the embryonic endoderm, Sox17 is also expressed in mature tissues, including the lung. Sox17 expression in respiratory epithelial cells was first detected in the fetal lung at embryonic day 18. Thereafter, Sox17 expression was restricted primarily to ciliated cells, suggesting its potential role in airway cell differentiation. When expressed in epithelial cells of the embryonic lung, Sox17 inhibited peripheral epithelial cell differentiation and disrupted branching morphogenesis. In vitro, Sox17 inhibited Sftpc and enhanced Foxj1 promoter activity, consistent with its expression in proximal airway cells. Conditional expression of Sox17 in peripheral respiratory epithelial cells of adult lung induced hyperplastic clusters of cells expressing increased levels of beta-catenin and differentiation markers representing multiple proximal respiratory epithelial cell types. Sox17 prolonged survival and enhanced growth and differentiation of respiratory epithelial cells in vitro. Sox17 induced plasticity of respiratory epithelial cells, reprogramming alveolar cells into epithelial cells with characteristics more typical of the proximal airway. Sites of expression and the effects of Sox17 in vivo and in vitro are consistent with a role for Sox17 or other members of the Sox family of transcription factors in differentiation of the conducting airway epithelium.
与性别决定区Y(Sry)相关的高迁移率族蛋白盒转录因子Sox17,是形成定形内胚层所必需的,而定形内胚层会发育成包括甲状腺、肺、肝脏、胰腺和肠道在内的各种器官。虽然Sox17在胚胎内胚层中高表达,但它也在包括肺在内的成熟组织中表达。呼吸上皮细胞中的Sox17表达最早在胚胎第18天的胎儿肺中被检测到。此后,Sox17的表达主要局限于纤毛细胞,这表明它在气道细胞分化中可能发挥作用。当在胚胎肺的上皮细胞中表达时,Sox17抑制外周上皮细胞分化并破坏分支形态发生。在体外,Sox17抑制Sftpc并增强Foxj1启动子活性,这与其在近端气道细胞中的表达一致。在成年肺的外周呼吸上皮细胞中条件性表达Sox17会诱导细胞增生性簇,这些细胞表达增加水平的β-连环蛋白和代表多种近端呼吸上皮细胞类型的分化标志物。Sox17延长了呼吸上皮细胞在体外的存活时间,并增强了其生长和分化。Sox17诱导呼吸上皮细胞的可塑性,将肺泡细胞重编程为具有更典型近端气道特征的上皮细胞。Sox17在体内和体外的表达位点及作用与Sox17或Sox转录因子家族的其他成员在传导气道上皮分化中的作用一致。