Institute for Anatomy and Cell Biology II, Division of Medical Cell Biology, Justus Liebig University, Giessen, Germany.
Laboratory of Lipid Biochemistry and Protein Interactions, KU Leuven, Leuven, Belgium.
PLoS One. 2018 Sep 13;13(9):e0203466. doi: 10.1371/journal.pone.0203466. eCollection 2018.
Despite the important functions of PPARγ in various cell types of the lung, PPARγ-deficiency in club cells induces only mild emphysema. Peroxisomes are distributed in a similar way as PPARγ in the lung and are mainly enriched in club and AECII cells. To date, the effects of PPARγ-deficiency on the overall peroxisomal compartment and its metabolic alterations in pulmonary club cells are unknown. Therefore, we characterized wild-type and club cell-specific PPARγ knockout-mice lungs and used C22 cells to investigate the peroxisomal compartment and its metabolic roles in the distal airway epithelium by means of 1) double-immunofluorescence labelling for peroxisomal proteins, 2) laser-assisted microdissection of the bronchiolar epithelium and subsequent qRT-PCR, 3) siRNA-transfection of PPARγand PPRE dual-luciferase reporter activity in C22 cells, 4) PPARg inhibition by GW9662, 5) GC-MS based lipid analysis. Our results reveal elevated levels of fatty acids, increased expression of PPARα and PPRE activity, a strong overall upregulation of the peroxisomal compartment and its associated gene expression (biogenesis, α-oxidation, β-oxidation, and plasmalogens) in PPARγ-deficient club cells. Interestingly, catalase was significantly increased and mistargeted into the cytoplasm, suggestive for oxidative stress by the PPARγ-deficiency in club cells. Taken together, PPARα-mediated metabolic induction and proliferation of peroxisomes via a PPRE-dependent mechanism could compensate PPARγ-deficiency in club cells.
尽管 PPARγ 在肺部的各种细胞类型中具有重要功能,但在 club 细胞中缺乏 PPARγ 仅会引起轻度肺气肿。过氧化物酶体在肺部的分布方式与 PPARγ 相似,主要富集在 club 和 AECII 细胞中。迄今为止,PPARγ 缺乏对肺 club 细胞中整体过氧化物酶体区室及其代谢改变的影响尚不清楚。因此,我们对野生型和 club 细胞特异性 PPARγ 敲除小鼠的肺部进行了表征,并使用 C22 细胞通过以下方法研究了过氧化物酶体区室及其在远端气道上皮细胞中的代谢作用:1)过氧化物酶体蛋白的双免疫荧光标记,2)支气管上皮的激光辅助微切割和随后的 qRT-PCR,3)C22 细胞中转染 PPARγ 和 PPRE 双荧光素酶报告基因活性,4)PPARg 抑制作用 GW9662,5)基于 GC-MS 的脂质分析。我们的结果表明,在 PPARγ 缺乏的 club 细胞中,脂肪酸水平升高,PPARα 的表达增加,过氧化物酶体区室及其相关基因表达(生物发生、α-氧化、β-氧化和磷脂)整体上调。有趣的是,过氧化氢酶水平显著增加并错误定位到细胞质中,提示 club 细胞中 PPARγ 缺乏会引起氧化应激。总之,PPARα 通过 PPRE 依赖性机制介导的代谢诱导和过氧化物酶体增殖可以补偿 club 细胞中 PPARγ 的缺乏。