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July 25, 20251 citations

Lineage identity governs oncogene dependence in murine NSCLC models of KRAS inhibitor resistance

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TJTyler JacksNMNicolas Mathey‐AndrewsCRCarrie L. Rodriguez

Key Points

  • Main findings show that lineage identity significantly influences oncogene dependence in drug-resistant tumors.
  • Despite initial responses, KrasG12C-driven lung cancers develop resistance mechanisms, such as lineage transformation.
  • The study utilized genetically engineered mouse models to investigate KRAS inhibitor efficacy and resistance.
  • Findings indicate that transcription factors are crucial in mediating oncogene independence during treatment with sotorasib.

Abstract

Abstract Primary and acquired resistance to targeted therapy represent significant challenges to durable treatment responses in cancer. In lung cancer and other cancer types, allele- specific and pan-KRAS inhibitors offer new promise, but these are hampered by incomplete responses as well as genetic and non-genetic mechanisms of acquired resistance. To model these mechanisms, we treat genetically engineered mouse models of KrasG12C-driven lung cancer with sotorasib, a KRASG12C inhibitor, until the emergence of drug resistance. The initial response to sotorasib was rapid, but incomplete. Residual tumor burden transcriptionally resembled the alveolar type II cell, phenocopying residual disease signatures identified in patients treated with EGFR inhibitors. After continued sotorasib treatment, we observed diverse mechanisms of drug resistance in vivo, including genetic MAPK reactivation and lineage transformation from adenocarcinoma to squamous histology. Focusing mechanistic studies on squamous transformation, we showed that expression of the basal transcription factor ∆Np63 is sufficient to rewire transformed alveolar organoids to a squamous state in vitro, conferring insensitivity to KRAS inhibition. In vivo, either ectopic expression of Sox2 or loss of Nkx2-1, which are tolerated during Kras-driven tumorigenesis, poised tumors for squamous lineage commitment upon KRAS inhibition. Squamous- transformed tumors did not exhibit evidence of KRAS/MAPK reactivation, underscoring the role for lineage transcription factors and histologic transformation in mediating oncogene independence.

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Cite This Study

Jacks et al. (2025) studied this question.

synapsesocial.com/papers/689a0627e6551bb0af8ce20dhttps://doi.org/10.21203/rs.3.rs-7058952/v1
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract B023: Identification of TME-dependent resistance and emergence of persister cells to KRAS inhibition2026
  2. 2Abstract 6841: Mutation specific mechanisms of resistance to oncogenic KRAS inhibition2024
  3. 3Gene expression correlates of adagrasib response in KRASG12C mutated non-small cell lung cancer (NSCLC).2024
  4. 4Abstract B028: Adaptive Signaling Rewiring Enables Rapid, Sequential Resistance to KRAS and Pan-RAS Inhibitors2026
  5. 5Abstract 1887: Real-time dissection of SCLC emergence in a KRAS G12C LUAD tumour: A case study of targeted therapy resistance.2026