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Regulation of lung progenitor plasticity and repair by fatty acid oxidation [scRNA-seq]

GSE284440 Mus musculus Expression profiling by high throughput sequencing 8 samples Submitted 2025/02/25 Platform GPL24247
Summary
Idiopathic pulmonary fibrosis (IPF) is an age-related interstitial lung disease, characterized by inadequate alveolar regeneration and ectopic bronchiolization. While some molecular pathways regulating lung progenitor cells have been described, the role of metabolic pathways in alveolar regeneration is poorly understood. We report that expression of fatty acid oxidation (FAO) genes significantly diminishes in alveolar epithelial cells of IPF lungs by single-cell RNA sequencing and tissue staining. Genetic and pharmacological inhibition in AT2 cells of carnitine palmitoyltransferase 1a (CPT1a), the rate-limiting enzyme of FAO, promoted mitochondrial dysfunction and acquisition of aberrant intermediate states expressing basaloid, and airway secretory cell markers SCGB1A1, and SCGB3A2. Further, mice with deficiency of CPT1a in AT2 cells show enhanced susceptibility to developing lung fibrosis with an accumulation of epithelial cells expressing markers of intermediate cells, airway secretory cells, and senescence. We found that deficiency of CPT1a causes a decrease in SMAD7 protein levels and TGF-β signaling pathway activation. These findings suggest that the mitochondrial FAO metabolic pathway contributes to the regulation of lung progenitor cell repair responses and deficiency of FAO contributes to aberrant lung repair and the development of lung fibrosis.
Published in
Regulation of lung progenitor plasticity and repair by fatty acid oxidation
Angeles-Lopez QD, Rodriguez-Lopez J, Agudelo Garcia P et al. · JCI insight 2025 · PMID 39927460 · doi:10.1172/jci.insight.165837
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Also filed as BioProject PRJNA1186233 and SRA study SRP545695. Searching any of these in the dataset finder brings you back here.

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