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Updated: Mar 26, 2026

Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
MET Amplification and Exon 14 Splice Site Mutation Define Unique Molecular Subgroups of Non-Small Cell Lung Carcinoma
Joanna H Tong1, Sai F Yeung1, Anthony W H Chan1
1Department of Anatomical and Cellular Pathology, The Chinese University of Hong Kong, Hong Kong. State Key Laboratory in Oncology in South China, The Chinese University of Hong Kong, Hong Kong. Li Ka-Shing Institute of Health Sciences, The Chinese University of Hong Kong, Hong Kong.
Purpose:
Activation of MET oncogene as the result of amplification or activation mutation represents an emerging molecular target for cancer treatment. We comprehensively studied MET alterations and the clinicopathologic correlations in a large cohort of treatment-naïve non-small cell lung carcinoma (NSCLC).
Experimental Design:
Six hundred eighty-seven NSCLCs were tested for MET exon 14 splicing site mutation (METΔ14), DNA copy number alterations, and protein expression by Sanger sequencing, FISH, and IHC, respectively.
Results:
METΔ14 mutation was detected in 2.62% (18/687) of NSCLC. The mutation rates were 2.6% in adenocarcinoma, 4.8% in adenosquamous carcinoma, and 31.8% in sarcomatoid carcinoma. METΔ14 mutation was not detected in squamous cell carcinoma, large cell carcinoma, and lymphoepithelioma-like carcinoma but significantly enriched in sarcomatoid carcinoma (P < 0.001). METΔ14 occurred mutually exclusively with known driver mutations but tended to coexist with MET amplification or copy number gain (P < 0.001). Low-level MET amplification and polysomy might occur in the background of EGFR or KRAS mutation whereas high-level amplification (MET/CEP7 ratio ≥5) was mutually exclusive to the major driver genes except METΔ14. Oncogenic METΔ14 mutation and/or high-level amplification occurred in a total of 3.3% (23/687) of NSCLC and associated with higher MET protein expression. METΔ14 occurred more frequently in older patients whereas amplification was more common in ever-smokers. Both METΔ14 and high-level amplification were independent prognostic factors that predicted poorer survival by multivariable analysis.
Conclusions:
The high incidence of METΔ14 mutation in sarcomatoid carcinoma suggested that MET inhibition might benefit this specific subgroup of patients. Clin Cancer Res; 22(12); 3048-56. ©2016 AACRSee related commentary by Drilon, p. 2832.
Insights
MET exon 14 splicing site mutations (METΔ14) and amplification are key targets in non-small cell lung cancer (NSCLC). These alterations, particularly frequent in sarcomatoid carcinoma, predict poorer survival and may benefit from MET inhibition.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- MET oncogene activation via amplification or mutation is an emerging cancer target.
- Understanding MET alterations in non-small cell lung carcinoma (NSCLC) is crucial for treatment strategies.
Purpose of the Study:
- To comprehensively study MET alterations in a large cohort of treatment-naïve NSCLC.
- To investigate clinicopathologic correlations of MET alterations.
Main Methods:
- Analysis of 687 NSCLC samples for MET exon 14 splicing site mutations (METΔ14), DNA copy number alterations, and protein expression.
- Techniques included Sanger sequencing, FISH, and IHC.
Main Results:
- METΔ14 mutation found in 2.62% of NSCLC, significantly enriched in sarcomatoid carcinoma (31.8%).
- METΔ14 and high-level amplification (≥5 ratio) were independent poor prognostic factors, associated with higher MET protein expression.
- Alterations occurred mutually exclusively with most driver mutations but coexisted with MET amplification/copy number gain.
Conclusions:
- High incidence of METΔ14 in sarcomatoid carcinoma suggests potential benefit from MET inhibition in this subgroup.
- MET alterations are significant prognostic factors in NSCLC.
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