bioRxiv · 10.1101/2025.01.20.633776
RAS-PI3K Pathway in CAFs Shapes Physicochemical Properties of Tumor ECM and restrains Tumor progression
Abstract
Cancer-associated fibroblasts display extensive functional plasticity, yet the signaling mechanisms that stabilize distinct CAF states remain poorly understood. Here, we identify stromal RAS-PI3K signaling as a key regulator of myofibroblastic CAF identity and matrix competence in lung cancer. Genetic disruption of the RAS-PI3K interaction in fibroblasts preserved upstream responsiveness to activating cues but impaired cytoskeletal remodeling, contractile execution and acquisition of a matrix-remodeling CAF program. As a result, RAS-PI3K-deficient CAFs generated extracellular matrices with defective collagen and fibronectin organization, reduced stiffness, altered microstructural properties and broad compositional remodeling of the matrisome, including changes in ECM glycoproteins and glycosylation-associated enzymes. These altered matrices failed to efficiently provide directional, adhesive and proliferative cues to tumor cells, attenuated EMT-associated programs and increased sensitivity to cisplatin plus pemetrexed. In vivo, fibroblast-specific RAS-PI3K disruption reduced tumor burden, decreased tumor cell proliferation, prolonged survival and improved chemotherapy response. Loss of RAS-PI3K signaling did not simply suppress CAF activation, but redirected CAFs toward a STAT3/NF-{kappa}B-linked immunomodulatory state associated with IL6, CXCL12 and PDGFR induction. Functionally, this altered stromal state promoted iNOS-associated macrophage features and was accompanied in vivo by reduced macrophage accumulation and increased CD8 T cell infiltration. These findings establish RAS-PI3K signaling as a stromal state-control mechanism that couples myofibroblastic matrix competence to tumor-supportive microenvironmental function while restraining alternative immunomodulatory CAF programs.
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Cuesta, C., Alcon-Perez, M., Zheng, J., Procel, N., Cota, R. R., Fennema, D., Rosell, A., Meson, D. L., Martinez-Castedo, B., Arafat, Y., Sanz-Fraile, H., Rajeeve, V., Alonso, D., Hynds, R. E., Swanton, C., Alcaraz, J., Cutillas, P., Reyes-Aldasoro, C. C., Wang, H., Castellano, E.. 2025-01-22. RAS-PI3K Pathway in CAFs Shapes Physicochemical Properties of Tumor ECM and restrains Tumor progression. https://doi.org/10.1101/2025.01.20.633776
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