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Downregulation of MCM2 contributes to the reduced growth potential of epithelial progenitor cells in chronic nasal inflammation

祖细胞 祖细胞 细胞生物学 炎症 生物 免疫学 下调和上调 干细胞 生物化学 基因
作者
Li Yue Li,Yu Zhou,Lin Sun,Xin Yi Liu,Jian Li,Yue Hong,Xiao Yan Ye,Qing Bao,Qing Xiang Meng,Wei Wen,He Xin Chen,Chun Wei Li
出处
期刊:The Journal of Allergy and Clinical Immunology [Elsevier BV]
卷期号:147 (5): 1966-1973.e3 被引量:12
标识
DOI:10.1016/j.jaci.2020.11.026
摘要

Background Recent studies have shown that human nasal epithelial progenitor cells (hNEPCs) are characterized by poor proliferation capacities during chronic nasal inflammation. Objective We sought to investigate the key molecular functions and candidates that contribute to the reduced growth potential of hNEPCs in chronically inflamed nasal mucosa. Methods Nasal biopsy specimens were obtained from 28 patients with nasal polyps (NPs) and 13 healthy controls. hNEPCs from nasal samples were cultured for 3 consecutive passages, and their molecular and functional profiles were analyzed by RNA sequencing. The minichromosome maintenance protein (MCM) family gene MCM2 was validated in hNEPCs and tissue samples from patients with NPs and control subjects by cell cycle, quantitative PCR, and Western blot analyses; small interfering RNA–mediated knockdown assay; and immunofluorescent staining. Results Compared with control hNEPCs, NP-derived hNEPCs showed (1) reduced growth kinetics, as evidenced by the colony-forming efficiency and doubling time; (2) inhibited cell cycle progression, as evidenced by gene ontology and/or pathway and cell cycle analyses; and (3) downregulated expression of MCM2, the key protein of the MCM complex, which is critical for DNA replication at the G1/S checkpoint. Moreover, hNEPCs with MCM2 knockdown showed a decreased proliferation rate, and the MCM2 protein level in basal cells was significantly lower in abnormally remodeled nasal epithelium than in normal epithelium. Conclusion These results demonstrate inhibited cell cycle progression and MCM2 downregulation in basal or progenitor nasal epithelial cells from NP tissue, which may contribute to the decreased growth potential of hNEPCs in chronically inflamed upper airways.
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