Wan Huajing, Kaestner Klaus H, Ang Siew-Lan, Ikegami Machiko, Finkelman Fred D, Stahlman Mildred T, Fulkerson Patricia C, Rothenberg Marc E, Whitsett Jeffrey A
Division of Pulmonary Biology, Cincinnati Children's Hospital Medical Center, 3333 Burnet Avenue, Cincinnati, OH 45229-3039, USA.
Development. 2004 Feb;131(4):953-64. doi: 10.1242/dev.00966.
The airways are lined by several distinct epithelial cells that play unique roles in pulmonary homeostasis; however, the mechanisms controlling their differentiation in health and disease are poorly understood. The winged helix transcription factor, FOXA2, is expressed in the foregut endoderm and in subsets of respiratory epithelial cells in the fetal and adult lung. Because targeted mutagenesis of the Foxa2 gene in mice is lethal before formation of the lung, its potential role in lung morphogenesis and homeostasis has not been determined. We selectively deleted Foxa2 in respiratory epithelial cells in the developing mouse lung. Airspace enlargement, goblet cell hyperplasia, increased mucin and neutrophilic infiltration were observed in lungs of the Foxa2-deleted mice. Experimental goblet cell hyperplasia caused by ovalbumin sensitization, interleukin 4 (IL4), IL13 and targeted deletion of the gene encoding surfactant protein C (SP-C), was associated with either absent or decreased expression of Foxa2 in airway epithelial cells. Analysis of lung tissue from patients with a variety of pulmonary diseases revealed a strong inverse correlation between FOXA2 and goblet cell hyperplasia. FOXA2 is required for alveolarization and regulates airway epithelial cell differentiation in the postnatal lung.
气道由几种不同的上皮细胞构成,这些细胞在肺内环境稳定中发挥着独特作用;然而,人们对其在健康和疾病状态下控制分化的机制知之甚少。有翼螺旋转录因子FOXA2在前肠内胚层以及胎儿和成年肺的部分呼吸上皮细胞中表达。由于小鼠中Foxa2基因的靶向诱变在肺形成之前是致命的,因此其在肺形态发生和内环境稳定中的潜在作用尚未确定。我们在发育中的小鼠肺的呼吸上皮细胞中选择性删除了Foxa2。在Foxa2缺失小鼠的肺中观察到气腔扩大、杯状细胞增生、粘蛋白增加和中性粒细胞浸润。由卵清蛋白致敏、白细胞介素4(IL4)、IL13以及编码表面活性蛋白C(SP-C)的基因靶向缺失引起的实验性杯状细胞增生,与气道上皮细胞中Foxa2表达缺失或降低有关。对患有各种肺部疾病患者的肺组织分析显示,FOXA2与杯状细胞增生之间存在强烈的负相关。肺泡化需要FOXA2,并且它在出生后肺中调节气道上皮细胞分化。