Department of Cell Physiology and Metabolism.
Department of Pediatrics, Gynecology, and Obstetrics, and.
Am J Respir Cell Mol Biol. 2024 Jul;71(1):81-94. doi: 10.1165/rcmb.2023-0408OC.
Epithelial polarity is fundamental in maintaining barrier integrity and tissue protection. In cystic fibrosis (CF), apicobasal polarity of the airway epithelium is altered, resulting in increased apical fibronectin deposition and enhanced susceptibility to bacterial infections. Here, we evaluated the effect of highly effective modulator treatment (HEMT) on fibronectin apical deposition and investigated the intracellular mechanisms triggering the defect in polarity of the CF airway epithelium. To this end, primary cultures of CF (F508del variant) human airway epithelial cells (HAECs) and a HAEC line, Calu-3, knocked down for (CF transmembrane conductance regulator) were compared with control counterparts. We show that mutation in primary HAECs and knockdown cells promote the overexpression and oversecretion of TGF-β1 and DKK1 when cultured at an air-liquid interface. These dynamic changes result in hyperactivation of the TGF-β pathway and inhibition of the Wnt pathway through degradation of β-catenin leading to imbalanced proliferation and polarization. The abnormal interplay between TGF-β and Wnt signaling pathways is reinforced by aberrant Akt signaling. Pharmacological manipulation of TGF-β, Wnt, and Akt pathways restored polarization of the F508del CF epithelium, a correction that was not achieved by HEMT. Our data shed new insights into the signaling pathways that fine-tune apicobasal polarization in primary airway epithelial cells and may provide an explanation to the mitigated efficacy of HEMT on lung infection in people with CF.
上皮细胞极性对于维持屏障完整性和组织保护至关重要。在囊性纤维化(CF)中,气道上皮的顶底极性发生改变,导致顶端纤维连接蛋白沉积增加,对细菌感染的易感性增强。在这里,我们评估了高效调节剂治疗(HEMT)对纤维连接蛋白顶端沉积的影响,并研究了触发 CF 气道上皮极性缺陷的细胞内机制。为此,我们比较了 CF(F508del 变体)人气道上皮细胞(HAEC)的原代培养物和敲低的 Calu-3 细胞与对照物。我们表明,在气液界面培养时,F508del 变体的突变和 的敲低促进了 TGF-β1 和 DKK1 的过度表达和过度分泌。这些动态变化导致 TGF-β 通路的过度激活和 Wnt 通路的抑制,通过降解 β-连环蛋白导致增殖和极化的失衡。TGF-β 和 Wnt 信号通路之间的异常相互作用通过异常的 Akt 信号得到加强。对 TGF-β、Wnt 和 Akt 通路的药理学操作恢复了 F508del CF 上皮的极化,而 HEMT 并不能实现这种纠正。我们的数据为精细调节原代气道上皮细胞顶底极性的信号通路提供了新的见解,并可能为 HEMT 减轻 CF 患者肺部感染疗效提供解释。