Sompel Kayla, Dwyer-Nield Lori D, Smith Alex J, Elango Alamelu P, Vanderlinden Lauren A, Kopf Katrina, Keith Robert L, Tennis Meredith A
School of Medicine, University of Colorado Anschutz Medical Campus, Aurora, CO, United States.
Skaggs School of Pharmacy, University of Colorado Anschutz Medical Campus, Aurora, CO, United States.
Front Oncol. 2022 Jul 18;12:815737. doi: 10.3389/fonc.2022.815737. eCollection 2022.
The transmembrane receptor Frizzled 9 (FZD9) is important for fetal neurologic and bone development through both canonical and non-canonical WNT/FZD signaling. In the adult lung, however, Fzd9 helps to maintain a normal epithelium by signaling through peroxisome proliferator activated receptor γ (PPARγ). The effect of FZD9 loss on normal lung epithelial cells and regulators of its expression in the lung are unknown. We knocked down FZD9 in human bronchial epithelial cell (HBEC) lines and found that downstream EMT targets and PPARγ activity are altered. We used a FZD9 mouse in the urethane lung adenocarcinoma model and found FZD9 adenomas had more proliferation, increased EMT signaling, decreased activation of PPARγ, increased expression of lung cancer associated genes, increased transformed growth, and increased potential for invasive behavior. We identified PPARγ as a transcriptional regulator of FZD9. We also demonstrated that extended cigarette smoke exposure in HBEC leads to decreased FZD9 expression, decreased activation of PPARγ, and increased transformed growth, and found that higher exposure to cigarette smoke in human lungs leads to decreased FZD9 expression. These results provide evidence for the role of FZD9 in lung epithelial maintenance and in smoking related malignant transformation. We identified the first transcriptional regulator of FZD9 in the lung and found FZD9 negative lesions are more dangerous. Loss of FZD9 creates a permissive environment for development of premalignant lung lesions, making it a potential target for intervention.
跨膜受体卷曲蛋白9(FZD9)通过经典和非经典WNT/FZD信号通路对胎儿神经和骨骼发育至关重要。然而,在成年肺中,Fzd9通过过氧化物酶体增殖物激活受体γ(PPARγ)信号传导来维持正常上皮细胞。FZD9缺失对正常肺上皮细胞的影响及其在肺中的表达调节因子尚不清楚。我们在人支气管上皮细胞(HBEC)系中敲低FZD9,发现下游上皮-间质转化(EMT)靶点和PPARγ活性发生改变。我们在氨基甲酸乙酯肺腺癌模型中使用FZD9基因敲除小鼠,发现FZD9缺失的腺瘤具有更多增殖、EMT信号增加、PPARγ激活减少、肺癌相关基因表达增加、转化生长增加以及侵袭行为潜能增加。我们确定PPARγ是FZD9的转录调节因子。我们还证明,HBEC中长期暴露于香烟烟雾会导致FZD9表达降低、PPARγ激活减少以及转化生长增加,并且发现人类肺部更高的香烟烟雾暴露会导致FZD9表达降低。这些结果为FZD9在肺上皮维持和吸烟相关恶性转化中的作用提供了证据。我们确定了肺中FZD9的首个转录调节因子,并发现FZD9阴性病变更危险。FZD9缺失为癌前肺病变的发展创造了有利环境,使其成为潜在的干预靶点。