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Kras G12C- and G12D-driven lung cancers differ in oncogenic potency, immunogenicity, and relapse after Kras
Hai-Cheng Huang1,2, Qing Deng1,2, Lei Guo3
1Department of Pathology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Abstract:
The development of allele-specific KRAS inhibitors underscores the importance of understanding the distinct tumor biology associated with common KRAS mutations, G12D and G12C, in genetically engineered mouse models (GEMMs) of non-small cell lung cancer (NSCLC) and patient samples. Lung tumors driven by the most common KRAS mutation, G12C, show delayed onset and slower progression compared with those driven by KRAS G12D in patients and mice. G12C tumors display lower proliferation and increased immune cell engagement, the latter of which is consistent with observations in patient tumors. Allele-specific KRAS G12C/D inhibitors effectively suppress the growth of respective autochthonous lung tumors. However, G12D-driven tumors relapse more rapidly than G12C-driven tumors in autochthonous models, reflecting greater intrinsic aggressiveness. Given this aggressive clinical behavior, we focused on elucidating the mechanism of action and strategies to potentiate KRASG12D inhibition in nonimmunogenic and immunogenic lung cancer models. G12D inhibition enhances tumor antigen presentation, activates T cells, and enables antigen-specific cytotoxicity, leading to efficacy with immune checkpoint blockade combination. This combination induces durable immune memory in immunogenic models but not in nonimmunogenic settings. Our findings underscore key differences between KRAS G12D and G12C mutations in shaping lung cancer biology, reveal distinct resistance dynamics under long-term targeted therapy, and uncover immune-mediated mechanisms specific to KRASG12D inhibition with direct clinical and translational relevance.
Insights
KRAS G12D mutations drive more aggressive lung cancer than G12C. Inhibiting KRAS G12D enhances immune response, offering potential combination therapies for non-small cell lung cancer (NSCLC).
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- KRAS mutations are common drivers in non-small cell lung cancer (NSCLC).
- Distinct biological behaviors exist between KRAS G12D and KRAS G12C mutations.
- Understanding these differences is crucial for developing targeted therapies.
Purpose of the Study:
- To compare the tumor biology of KRAS G12D and G12C mutations in NSCLC.
- To investigate mechanisms and potentiation strategies for KRAS G12D inhibition.
- To evaluate combination therapy with immune checkpoint blockade.
Main Methods:
- Utilized genetically engineered mouse models (GEMMs) of NSCLC.
- Analyzed patient tumor samples.
- Administered allele-specific KRAS inhibitors and immune checkpoint blockade.
Main Results:
- KRAS G12D-driven tumors exhibit faster progression and relapse than G12C-driven tumors.
- G12C tumors show slower growth and increased immune cell infiltration.
- KRAS G12D inhibition enhances antigen presentation and T cell activation, improving efficacy with combination therapy in immunogenic models.
Conclusions:
- KRAS G12D and G12C mutations confer distinct tumor biology and resistance dynamics.
- KRAS G12D inhibition can synergize with immunotherapy, inducing immune memory in specific settings.
- Findings provide translational insights for NSCLC treatment strategies.
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