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Published on: September 8, 2023
MET gene alterations predict poor survival following chemotherapy in patients with advanced cancer
Jihoon Ko1, Jaeyun Jung1, Seung Tae Kim1
1Division of Hematology-Oncology, Department of Medicine, Samsung Medical Center, School of Medicine, Sungkyunkwan University, Seoul, South Korea.
Abstract:
Background: To aid in oncology drug development, we investigated MET proto-oncogene receptor tyrosine kinase gene aberrations in 2,239 oncology patients who underwent next-generation sequencing (NGS) in clinical practice. Materials and methods: From November 2019 to January 2021, 2,239 patientswith advanced solid tumors who visited oncology clinics underwent NGS. The NGS panel included >500 comprehensive NGS tests using archival tissue specimens. Programmed death-ligand 1(PD-L1) 22C3 assay results and clinical records regarding initial chemotherapy were available for 1,137 (50.8%) and 1,761 (78.7%) patients, respectively for overall survival (OS) analysis. Results: The 2,239 patients represented 37 types of cancer. The NGS panel included >500 genes, microsatellite instability status, tumor mutational burden, and fusions. The most common cancer types were colorectal (N = 702), gastric (N = 481), and sarcoma (N = 180). MET aberrations were detected in 212 patients. All MET-amplified tumors had microsatellite stable status, and 8 had a high tumor mutational burden. Of 46 patients with MET-amplified cancers, 8 had MET-positive protein expression by immunohistochemistry (2+ and 3+). MET fusion was detected in 10 patients. Partner genes of MET fusion included ST7, TFEC, LRRD1, CFTR, CAV1, PCM1, HLA-DRB1, and CAPZA2. In survival analysis, patients with amplification of MET gene fusion had shorter OS and progression-free survival (PFS) than those without. Thus, MET aberration was determined to be a factor of response to chemotherapy. Conclusion: Approximately 2.1% and 0.4% of patients with advanced solid tumors demonstrated MET gene amplification and fusion, respectively, and displayed a worse response to chemotherapy and significantly shorter OS and PFS than those without MET gene amplification or fusion.
Insights
MET gene aberrations, including amplification and fusion, were found in advanced solid tumors. These MET aberrations correlate with a poorer response to chemotherapy and shorter overall survival (OS) and progression-free survival (PFS).
Area of Science:
- Oncology
- Molecular Diagnostics
- Genomics
Background:
- Investigated MET proto-oncogene receptor tyrosine kinase (MET) gene aberrations in 2,239 oncology patients undergoing clinical next-generation sequencing (NGS).
- Aimed to aid oncology drug development by understanding the prevalence and impact of MET aberrations.
Purpose of the Study:
- To determine the frequency of MET gene amplification and fusion in patients with advanced solid tumors.
- To evaluate the association between MET aberrations and clinical outcomes, including response to chemotherapy, overall survival (OS), and progression-free survival (PFS).
Main Methods:
- Conducted comprehensive NGS on archival tissue specimens from 2,239 patients with advanced solid tumors.
- Analyzed programmed death-ligand 1 (PD-L1) expression and clinical records for survival analysis.
- Assessed MET protein expression via immunohistochemistry in a subset of patients.
Main Results:
- MET aberrations were detected in 212 patients (approximately 9.5%), with gene amplification in 2.1% and fusion in 0.4%.
- MET-amplified tumors were microsatellite stable and occasionally had high tumor mutational burden.
- Patients with MET amplification or fusion exhibited significantly shorter OS and PFS and a worse response to chemotherapy.
Conclusions:
- MET gene amplification and fusion occur in a notable percentage of advanced solid tumors.
- MET aberrations are associated with unfavorable clinical outcomes and reduced efficacy of chemotherapy.
- These findings highlight the importance of detecting MET aberrations for guiding oncology treatment strategies.
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