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Published on: June 26, 2019
Alveolar differentiation drives resistance to KRAS inhibition in lung adenocarcinoma
Abstract:
Lung adenocarcinoma (LUAD), commonly driven by KRAS mutations, is responsible for 7% of all cancer mortality. The first allele-specific KRAS inhibitors were recently approved in LUAD, but clinical benefit is limited by intrinsic and acquired resistance. LUAD predominantly arises from alveolar type 2 (AT2) cells, which function as facultative alveolar stem cells by self-renewing and replacing alveolar type 1 (AT1) cells. Using genetically engineered mouse models, patient-derived xenografts, and patient samples we found inhibition of KRAS promotes transition to a quiescent AT1-like cancer cell state in LUAD tumors. Similarly, suppressing Kras induced AT1 differentiation of wild-type AT2 cells upon lung injury. The AT1-like LUAD cells exhibited high growth and differentiation potential upon treatment cessation, whereas ablation of the AT1-like cells robustly improved treatment response to KRAS inhibitors. Our results uncover an unexpected role for KRAS in promoting intra-tumoral heterogeneity and suggest targeting alveolar differentiation may augment KRAS-targeted therapies in LUAD.
Significance:
Treatment resistance limits response to KRAS inhibitors in LUAD patients. We find LUAD residual disease following KRAS targeting is composed of AT1-like cancer cells with the capacity to reignite tumorigenesis. Targeting the AT1-like cells augments responses to KRAS inhibition, elucidating a therapeutic strategy to overcome resistance to KRAS-targeted therapy.
Insights
KRAS inhibitors face resistance in lung adenocarcinoma (LUAD). Targeting AT1-like cells, a resistant state, overcomes this, improving KRAS inhibitor therapy and reducing cancer mortality.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Lung adenocarcinoma (LUAD) is a major cause of cancer mortality, often driven by KRAS mutations.
- Current KRAS inhibitors show limited clinical benefit due to resistance.
- LUAD originates from alveolar type 2 (AT2) cells, which have stem cell properties.
Conclusions:
- Alveolar differentiation is a key mechanism of resistance to KRAS inhibitors in LUAD.
- Targeting AT1-like cells represents a promising therapeutic strategy to overcome resistance.
- Combining KRAS inhibition with strategies targeting alveolar differentiation may improve LUAD treatment outcomes.
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