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Molecular Characterization of Acquired Resistance to KRASG12C-EGFR Inhibition in Colorectal Cancer
Rona Yaeger1, Riccardo Mezzadra2, Jenna Sinopoli1
1Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, New York.
Abstract:
With the combination of KRASG12C and EGFR inhibitors, KRAS is becoming a druggable target in colorectal cancer. However, secondary resistance limits its efficacy. Using cell lines, patient-derived xenografts, and patient samples, we detected a heterogeneous pattern of putative resistance alterations expected primarily to prevent inhibition of ERK signaling by drugs at progression. Serial analysis of patient blood samples on treatment demonstrates that most of these alterations are detected at a low frequency except for KRASG12C amplification, a recurrent resistance mechanism that rises in step with clinical progression. Upon drug withdrawal, resistant cells with KRASG12C amplification undergo oncogene-induced senescence, and progressing patients experience a rapid fall in levels of this alteration in circulating DNA. In this new state, drug resumption is ineffective as mTOR signaling is elevated. However, our work exposes a potential therapeutic vulnerability, whereby therapies that target the senescence response may overcome acquired resistance.
Significance:
Clinical resistance to KRASG12C-EGFR inhibition primarily prevents suppression of ERK signaling. Most resistance mechanisms are subclonal, whereas KRASG12C amplification rises over time to drive a higher portion of resistance. This recurrent resistance mechanism leads to oncogene-induced senescence upon drug withdrawal and creates a potential vulnerability to senolytic approaches. This article is highlighted in the In This Issue feature, p. 1.
Insights
KRAS inhibitors show promise in colorectal cancer but face resistance. KRASG12C amplification drives resistance, leading to senescence and potential vulnerability to senolytic therapies.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- KRAS is a key target in colorectal cancer, with inhibitors showing promise.
- Secondary resistance mechanisms limit the efficacy of KRAS and EGFR inhibitors.
Purpose of the Study:
- To investigate resistance mechanisms to KRASG12C and EGFR inhibitors in colorectal cancer.
- To identify therapeutic vulnerabilities arising from acquired resistance.
Main Methods:
- Utilized cell lines, patient-derived xenografts, and patient samples.
- Performed serial analysis of patient blood samples to track resistance alterations.
- Investigated oncogene-induced senescence and mTOR signaling pathways.
Main Results:
- Detected heterogeneous resistance alterations primarily affecting ERK signaling.
- Identified KRASG12C amplification as a recurrent resistance mechanism that increases with progression.
- Observed oncogene-induced senescence upon drug withdrawal in resistant cells.
- Found mTOR signaling to be elevated in resistant states, rendering drug resumption ineffective.
Conclusions:
- KRASG12C amplification is a significant resistance mechanism in colorectal cancer.
- Acquired resistance creates a vulnerability to senolytic therapies targeting senescence.
- Targeting senescence may offer a strategy to overcome acquired resistance to KRAS-targeted therapies.
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