bioRxiv · 10.1101/2023.04.15.536974
EGFR+ lung adenocarcinomas coopt alveolar macrophage metabolism and function to support EGFR signaling and growth
Abstract
The limited efficacy of currently approved immunotherapies in EGFR-mutant lung adenocarcinoma (LUAD) underscores the need to better understand mechanisms governing local immunosuppression. Elevated surfactant and GM-CSF secretion from the transformed epithelium induces tumor-associated alveolar macrophages (TA-AM) to proliferate and support tumor growth by rewiring inflammatory functions and lipid metabolism. TA-AM properties are driven by increased GM-CSF--PPAR{gamma} signaling and inhibition of airway GM-CSF or PPAR{gamma} in TA-AMs suppresses cholesterol efflux to tumor cells, which impairs EGFR phosphorylation and restrains LUAD progression. In the absence of TA-AM metabolic support, LUAD cells compensate by increasing cholesterol synthesis, and blocking PPAR{gamma} in TA-AMs simultaneous with statin therapy further suppresses tumor progression and increases T cell effector functions. These results reveal new therapeutic combinations for immunotherapy resistant EGFR-mutant LUADs and demonstrate how such cancer cells can metabolically co-opt TA-AMs through GM-CSF--PPAR{gamma} signaling to provide nutrients that promote oncogenic signaling and growth.
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Kuhlmann-Hogan, A., Cordes, T., Xu, Z., Traina, K., Robles-Oteiza, C., Ayeni, D., Kwong, E. M., Levy, S., Nobari, M., Cheng, G. Z., Shaw, R. J., Leibel, S. L., Metallo, C., Politi, K., Kaech, S. M.. 2023-04-17. EGFR+ lung adenocarcinomas coopt alveolar macrophage metabolism and function to support EGFR signaling and growth. https://doi.org/10.1101/2023.04.15.536974
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