先天免疫系统
车站3
生物
免疫学
免疫系统
气道
呼吸上皮
突变
上皮
医学
细胞生物学
信号转导
基因
遗传学
外科
作者
Yihan Zhang,Lin Tian,Hui Min Leung,Cheng Zhang,Brittany Wilson-Mifsud,Michael B. Feldman,Anne Puel,Fanny Lanternier,Louis‐Jean Couderc,François Danion,Émilie Catherinot,Hélène Salvator,Colas Tcherkian,C. Givel,Jie Xu,Guillermo J. Tearney,Jatin M. Vyas,Hu Li,Bryan P. Hurley,Hongmei Mou
标识
DOI:10.1016/j.jaci.2022.12.821
摘要
Job syndrome is a disease of autosomal dominant hyper-IgE syndrome (AD-HIES). Patients harboring STAT3 mutation are particularly prone to airway remodeling and airway infections.Airway epithelial cells play a central role as the first line of defense against pathogenic infection and express high levels of STAT3. This study thus interrogates how AD-HIES STAT3 mutations impact the physiological functions of airway epithelial cells.This study created human airway basal cells expressing 4 common AD-HIES STAT3 mutants (R382W, V463del, V637M, and Y657S). In addition, primary airway epithelial cells were isolated from a patient with Job syndrome who was harboring a STAT3-S560del mutation and from mice harboring a STAT3-V463del mutation. Cell proliferation, differentiation, barrier function, bacterial elimination, and innate immune responses to pathogenic infection were quantitatively analyzed.STAT3 mutations reduce STAT3 protein phosphorylation, nuclear translocation, transcription activity, and protein stability in airway basal cells. As a consequence, STAT3-mutated airway basal cells give rise to airway epithelial cells with abnormal cellular composition and loss of coordinated mucociliary clearance. Notably, AD-HIES STAT3 airway epithelial cells are defective in bacterial killing and fail to initiate vigorous proinflammatory responses and neutrophil transepithelial migration in response to an experimental model of Pseudomonas aeruginosa infection.AD-HIES STAT3 mutations confer numerous abnormalities to airway epithelial cells in cell differentiation and host innate immunity, emphasizing their involvement in the pathogenesis of lung complications in Job syndrome. Therefore, therapies must address the epithelial defects as well as the previously noted immune cell defects to alleviate chronic infections in patients with Job syndrome.
科研通智能强力驱动
Strongly Powered by AbleSci AI