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Lineage identity governs oncogene dependence in mouse NSCLC models of KRAS inhibitor resistance.
Nature Genetics · · Journal Article
Mathey-Andrews, Rodriguez + more
Abstract ↗AI summary
The abstract is read at the publisher; the summary is JClub's.
Lineage transformation to squamous identity enables KRAS inhibitor resistance in mouse lung adenocarcinoma models, independent of KRAS/MAPK pathway reactivation.
- Why it matters: Understanding mechanisms of resistance to targeted therapies like KRAS inhibitors is crucial for improving treatment durability in lung adenocarcinoma, especially when resistance arises through lineage changes rather than pathway reactivation.
- What they did: The study used genetically engineered mouse models treated with KRAS inhibitors, combined with CRISPR techniques to induce squamous lineage transformation, examining genetic and transcriptional changes associated with resistance.
- The result: Squamous lineage transformation, driven by factors like ΔNp63 and Sox2, confers KRAS independence without reactivating KRAS/MAPK signaling, highlighting lineage plasticity as a key resistance mechanism.
The findingWhy it mattersWhat they didThe result