Kras oncogene ablation prevents resistance in advanced lung adenocarcinomas
Marina Salmón1, Ruth Álvarez-Díaz1, Coral Fustero-Torre2
1Experimental Oncology Group, Molecular Oncology Program.
Abstract:
KRASG12C inhibitors have revolutionized the clinical management of patients with KRASG12C-mutant lung adenocarcinoma. However, patient exposure to these inhibitors leads to the rapid onset of resistance. In this study, we have used genetically engineered mice to compare the therapeutic efficacy and the emergence of tumor resistance between genetic ablation of mutant Kras expression and pharmacological inhibition of oncogenic KRAS activity. Whereas Kras ablation induces massive tumor regression and prevents the appearance of resistant cells in vivo, treatment of KrasG12C/Trp53-driven lung adenocarcinomas with sotorasib, a selective KRASG12C inhibitor, caused a limited antitumor response similar to that observed in the clinic, including the rapid onset of resistance. Unlike in human tumors, we did not observe mutations in components of the RAS-signaling pathways. Instead, sotorasib-resistant tumors displayed amplification of the mutant Kras allele and activation of xenobiotic metabolism pathways, suggesting that reduction of the on-target activity of KRASG12C inhibitors is the main mechanism responsible for the onset of resistance. In sum, our results suggest that resistance to KRAS inhibitors could be prevented by achieving a more robust inhibition of KRAS signaling mimicking the results obtained upon Kras ablation.
Insights
Genetic Kras ablation halts lung cancer growth and prevents resistance, unlike KRASG12C inhibitors like sotorasib. Achieving more robust KRAS signaling inhibition may overcome drug resistance.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- KRASG12C inhibitors offer new treatments for lung adenocarcinoma.
- Drug resistance rapidly emerges, limiting long-term efficacy.
Purpose of the Study:
- Compare therapeutic effects and resistance development between Kras gene ablation and KRASG12C inhibitor treatment.
- Investigate resistance mechanisms in KRASG12C-mutant lung cancer.
Main Methods:
- Utilized genetically engineered mouse models of lung adenocarcinoma.
- Compared Kras genetic ablation versus sotorasib pharmacological inhibition.
- Analyzed tumor regression, resistance emergence, and molecular alterations.
Main Results:
- Kras ablation caused significant tumor regression and prevented resistance.
- Sotorasib showed limited antitumor response and rapid resistance development.
- Resistance involved Kras allele amplification and altered xenobiotic metabolism, not RAS pathway mutations.
Conclusions:
- Kras ablation offers superior therapeutic outcomes compared to KRASG12C inhibitors.
- Robust inhibition of KRAS signaling is key to preventing resistance.
- Targeting xenobiotic metabolism may offer new therapeutic strategies.
More Related Videos
09:38Establishing Dual Resistance to EGFR-TKI and MET-TKI in Lung Adenocarcinoma Cells In Vitro with a 2-step Dose-escalation Procedure
Published on: August 11, 2017
11:15Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
Related Concept Videos
Targeted Cancer Therapies
There are several types of targeted therapies against...
The Retinoblastoma Gene
The first-ever tumor suppressor gene called Rb was identified in retinoblastoma - a rare eye tumor in children. In inherited forms of the disease, a child inherits one defective copy of the Rb gene, which predisposes them to retinoblastoma. However,...
Abnormal Proliferation
