Abstract / Summary
Mutant-selective and pan-RAS(ON) multi-selective inhibitors have improved clinical outcomes for patients with RAS-driven cancers; however, adaptive resistance limits the depth and durability of response. Using an integrated genetic, transcriptomic, and mass-spectrometry-based quantitative temporal proteomic platform, we profile the adaptive response to KRAS G12C inhibitors (KRASi) in KRAS G12C -mutant lung adenocarcinoma models. Our analyses reveal remodeling of signaling pathways and the cell surface proteome, including cell surface proteins selectively upregulated across cell lines, tumor models, and treatment durations. Folate receptor alpha (FOLR1) emerged as a therapeutically actionable target that is significantly upregulated with KRASi and is part of a broader acute cellular state transition characterized by acquisition of an epithelial identity. Combining KRASi with mirvetuximab soravtansine-gynx, a clinically approved FOLR1-targeting antibody drug conjugate, enhanced tumor cell cytotoxicity and deepened response and tumor control in cellular and in vivo models. Additionally, this work represents a comprehensive multi-omic resource characterizing non-genetic temporal adaptation to KRASi for future mechanistic and therapeutic investigations.