Cole Timothy J, Solomon Nicola M, Van Driel Rosemary, Monk Julie A, Bird Daniel, Richardson Samantha J, Dilley Rodney J, Hooper Stuart B
Department of Biochemistry and Molecular Biology, University of Melbourne, Parkville, Victoria, Australia.
Am J Respir Cell Mol Biol. 2004 May;30(5):613-9. doi: 10.1165/rcmb.2003-0236OC. Epub 2003 Oct 24.
Glucocorticoids provide important signals for maturation of the fetal lung and antenatal glucocorticoids are used to reduce the respiratory insufficiency suffered by preterm infants. To further understand the role of glucocorticoids in fetal lung maturation, we have analyzed mice with a targeted null mutation for the glucocorticoid receptor (GR) gene, which severely retards lung development. The lungs of fetal GR-null mice have increased lung weight and DNA content, are condensed and hypercellular, with reduced septal thinning leading to a 6-fold increase in the airway to capillary diffusion distance. In fetal GR-null mice, mRNA levels of the type II epithelial cell surfactant protein genes A and C were reduced by approximately 50%. Analysis of epithelial cell types by electron microscopy revealed that the proportions of type II cells were increased by approximately 30%, whereas the proportions of type-I cells were markedly reduced (by approximately 50%). Similarly, we found a 50% reduction in mRNA levels for T1alpha and aquaporin-5, two type I cell-specific markers, and a 20% reduction in aquaporin-1 mRNA levels. This demonstrates that during murine embryonic development, receptor-mediated glucocorticoid signaling facilitates the differentiation of epithelial cells into type I cells, but is not obligatory for type II cell differentiation.
糖皮质激素为胎儿肺成熟提供重要信号,产前使用糖皮质激素可减少早产儿所患的呼吸功能不全。为进一步了解糖皮质激素在胎儿肺成熟中的作用,我们分析了糖皮质激素受体(GR)基因发生靶向无效突变的小鼠,这种突变严重阻碍肺发育。胎儿GR基因缺失小鼠的肺重量和DNA含量增加,肺组织致密且细胞过多,间隔变薄减少,导致气道到毛细血管的扩散距离增加了6倍。在胎儿GR基因缺失小鼠中,II型上皮细胞表面活性蛋白基因A和C的mRNA水平降低了约50%。通过电子显微镜分析上皮细胞类型发现,II型细胞的比例增加了约30%,而I型细胞的比例明显降低(约50%)。同样,我们发现I型细胞特异性标志物T1α和水通道蛋白-5的mRNA水平降低了50%,水通道蛋白-1的mRNA水平降低了20%。这表明在小鼠胚胎发育过程中,受体介导的糖皮质激素信号传导促进上皮细胞分化为I型细胞,但对II型细胞分化并非必不可少。