气道
囊性纤维化
粘液
氯离子通道
生物
势垒函数
细胞生物学
粘液纤毛清除率
免疫学
肺
医学
遗传学
内科学
生态学
外科
作者
Mu He,Bing Wu,Wenlei Ye,Daniel D. Le,Adriane Sinclair,Valeria Padovano,Yuzhang Chen,Kexin Li,Rene Sit,Michelle Tan,Michael J. Caplan,Norma Neff,Yuh Nung Jan,Spyros Darmanis,Lily Yeh Jan
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2020-04-14
卷期号:9
被引量:26
摘要
The conducting airway forms a protective mucosal barrier and is the primary target of airway disorders. The molecular events required for the formation and function of the airway mucosal barrier, as well as the mechanisms by which barrier dysfunction leads to early onset airway diseases, remain unclear. In this study, we systematically characterized the developmental landscape of the mouse airway using single-cell RNA sequencing and identified remarkably conserved cellular programs operating during human fetal development. We demonstrated that in mouse, genetic inactivation of chloride channel Ano1/Tmem16a compromises airway barrier function, results in early signs of inflammation, and alters the airway cellular landscape by depleting epithelial progenitors. Mouse Ano1-/-mutants exhibited mucus obstruction and abnormal mucociliary clearance that resemble the airway defects associated with cystic fibrosis. The data reveal critical and non-redundant roles for Ano1 in organogenesis, and show that chloride channels are essential for mammalian airway formation and function.
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