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MET gene amplification is a mechanism of resistance to entrectinib in ROS1+ NSCLC
Logan C Tyler1, Anh T Le1, Nan Chen1
1Department of Medicine-Division of Medical Oncology, University of Colorado-Anschutz Medical Campus, Aurora, Colorado, USA.
Background:
ROS1 tyrosine kinase inhibitors (TKIs) have demonstrated significant clinical benefit for ROS1+ NSCLC patients. However, TKI resistance inevitably develops through ROS1 kinase domain (KD) modification or another kinase driving bypass signaling. While multiple TKIs have been designed to target ROS1 KD mutations, less is known about bypass signaling in TKI-resistant ROS1+ lung cancers.
Methods:
Utilizing a primary, patient-derived TPM3-ROS1 cell line (CUTO28), we derived an entrectinib-resistant line (CUTO28-ER). We evaluated proliferation and signaling responses to TKIs, and utilized RNA sequencing, whole exome sequencing, and fluorescence in situ hybridization to detect transcriptional, mutational, and copy number alterations, respectively. We substantiated in vitro findings using a CD74-ROS1 NSCLC patient's tumor samples. Last, we analyzed circulating tumor DNA (ctDNA) from ROS1+ NSCLC patients in the STARTRK-2 entrectinib trial to determine the prevalence of MET amplification.
Results:
CUTO28-ER cells did not exhibit ROS1 KD mutations. MET TKIs inhibited proliferation and downstream signaling and MET transcription was elevated in CUTO28-ER cells. CUTO28-ER cells displayed extrachromosomal (ecDNA) MET amplification without MET activating mutations, exon 14 skipping, or fusions. The CD74-ROS1 patient samples illustrated MET amplification while receiving ROS1 TKI. Finally, two of 105 (1.9%) entrectinib-resistant ROS1+ NSCLC STARTRK-2 patients with ctDNA analysis at enrollment and disease progression displayed MET amplification.
Conclusions:
Treatment with ROS1-selective inhibitors may lead to MET-mediated resistance. The discovery of ecDNA MET amplification is noteworthy, as ecDNA is associated with more aggressive cancers. Following progression on ROS1-selective inhibitors, MET gene testing and treatments targeting MET should be explored to overcome MET-driven resistance.
Insights
Resistance to ROS1 tyrosine kinase inhibitors (TKIs) in non-small cell lung cancer (NSCLC) can be driven by MET amplification. Targeting MET is crucial for overcoming this resistance in ROS1+ NSCLC patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- ROS1 tyrosine kinase inhibitors (TKIs) are effective for ROS1+ non-small cell lung cancer (NSCLC).
- Acquired resistance to ROS1 TKIs develops via kinase domain mutations or bypass signaling.
- Mechanisms of bypass signaling in TKI-resistant ROS1+ NSCLC are not fully understood.
Purpose of the Study:
- To investigate mechanisms of entrectinib resistance in ROS1+ NSCLC.
- To identify bypass signaling pathways driving resistance to ROS1 TKIs.
Main Methods:
- Derived an entrectinib-resistant cell line (CUTO28-ER) from a patient-derived TPM3-ROS1 line.
- Performed RNA sequencing, whole exome sequencing, and fluorescence in situ hybridization.
- Analyzed circulating tumor DNA (ctDNA) from ROS1+ NSCLC patients in the STARTRK-2 trial.
Main Results:
- Entrectinib-resistant cells (CUTO28-ER) lacked ROS1 kinase domain mutations.
- MET TKIs inhibited proliferation and signaling in resistant cells, with elevated MET transcription.
- Extrachromosomal (ecDNA) MET amplification was observed in resistant cells without common MET alterations.
- MET amplification was found in patient samples and ctDNA from resistant ROS1+ NSCLC patients.
Conclusions:
- MET-mediated resistance can emerge following treatment with ROS1-selective inhibitors.
- Extrachromosomal (ecDNA) MET amplification represents a novel resistance mechanism.
- MET gene testing and targeted therapies should be considered for patients progressing on ROS1 TKIs.
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