Department of Respiratory Medicine, Tohoku University Graduate School of Medicine, Sendai, 980 8574, Japan.
Department of Respiratory Medicine, Tohoku University Graduate School of Medicine, Sendai, 980 8574, Japan.
Respir Investig. 2022 Jan;60(1):119-128. doi: 10.1016/j.resinv.2021.08.007. Epub 2021 Sep 20.
Alveolar epithelial type 2 (AT2) cells serve as stem cells in alveolar epithelium and are assumed to lose their stem cell function in the lungs of chronic obstructive pulmonary disease (COPD). Although we previously reported that LHX9 mRNA expression was up-regulated in AT2 cells of COPD lung tissues, it is yet to be elucidated how LHX9 is associated with the vulnerability of AT2 cells in COPD.
AT2 cells were isolated from lung tissues of 10 non-COPD subjects and 11 COPD patients. LHX9 mRNA expression was determined by quantitative RT-PCR. To identify up-stream molecules, an alveolar epithelial cell line A549 was exposed to pro-inflammatory cytokines in vitro. siRNA-mediated Lhx9 knockdown was performed to determine how Lhx9 affected the cellular viability and the cell-division cycle.
LHX9 mRNA expression was increased in AT2 cells from COPD lung tissues, compared to those from non-COPD tissues. The airflow obstruction was independently correlated with the increase in LHX9 expression. Among several pro-inflammatory cytokines, interferon-γ was a strong inducer of LHX9 expression in A549 cells. Lhx9 was involved in the increased susceptibility to serum starvation-induced death of A549 cells.
Our data suggest that IFN-γ predominantly increases the LHX9 expression which enhances the susceptibility to cell death. Considering the independent association of the increased LHX9 expression in AT2 cells with airflow obstruction, the IFN-γ-Lhx9 axis might contribute to the vulnerability of AT2 cells in the lungs of COPD patients.
肺泡上皮细胞 2 型(AT2)作为肺泡上皮的干细胞,其干细胞功能在慢性阻塞性肺疾病(COPD)的肺部中被认为会丧失。尽管我们之前报道过 COPD 肺组织中的 AT2 细胞中 LHX9 mRNA 的表达上调,但尚不清楚 LHX9 与 COPD 中 AT2 细胞的易损性之间的关系。
从 10 名非 COPD 受试者和 11 名 COPD 患者的肺组织中分离 AT2 细胞。通过定量 RT-PCR 测定 LHX9 mRNA 的表达。为了鉴定上游分子,将肺泡上皮细胞系 A549 暴露于体外的促炎细胞因子中。进行 siRNA 介导的 Lhx9 敲低,以确定 Lhx9 如何影响细胞活力和细胞分裂周期。
与非 COPD 组织相比,COPD 肺组织中的 AT2 细胞中 LHX9 mRNA 的表达增加。气流阻塞与 LHX9 表达的增加独立相关。在几种促炎细胞因子中,干扰素-γ是 A549 细胞中 LHX9 表达的强诱导剂。Lhx9 参与了 A549 细胞对血清饥饿诱导死亡的敏感性增加。
我们的数据表明,IFN-γ主要增加 LHX9 的表达,从而增强对细胞死亡的敏感性。考虑到 AT2 细胞中 LHX9 表达增加与气流阻塞的独立相关性,IFN-γ-Lhx9 轴可能导致 COPD 患者肺部 AT2 细胞的易损性。