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Updated: Jun 3, 2025

Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
MET Exon 14 Skipping and Novel Actionable Variants: Diagnostic and Therapeutic Implications in Latin American
Solange Rivas1, Romina V Sepúlveda2, Ignacio Tapia1
1Centro de Genética y Genómica, Instituto de Ciencias e Innovación en Medicina, Facultad de Medicina Clínica Alemana Universidad del Desarrollo, Santiago 7550000, Chile.
Abstract:
Targeted therapy indications for actionable variants in non-small-cell lung cancer (NSCLC) have primarily been studied in Caucasian populations, with limited data on Latin American patients. This study utilized a 52-genes next-generation sequencing (NGS) panel to analyze 1560 tumor biopsies from NSCLC patients in Chile, Brazil, and Peru. The RNA sequencing reads and DNA coverage were correlated to improve the detection of the actionable MET exon 14 skipping variant (METex14). The pathogenicity of MET variants of uncertain significance (VUSs) was assessed using bioinformatic methods, based on their predicted driver potential. The effects of the predicted drivers VUS T992I and H1094Y on c-MET signaling activation, proliferation, and migration were evaluated in HEK293T, BEAS-2B, and H1993 cell lines. Subsequently, c-Met inhibitors were tested in 2D and 3D cell cultures, and drug affinity was determined using 3D structure simulations. The prevalence of MET variants in the South American cohort was 8%, and RNA-based diagnosis detected 27% more cases of METex14 than DNA-based methods. Notably, 20% of METex14 cases with RNA reads below the detection threshold were confirmed using DNA analysis. The novel actionable T992I and H1094Y variants induced proliferation and migration through c-Met/Akt signaling. Both variants showed sensitivity to crizotinib and savolitinib, but the H1094Y variant exhibited reduced sensitivity to capmatinib. These findings highlight the importance of RNA-based METex14 diagnosis and reveal the drug sensitivity profiles of novel actionable MET variants from an understudied patient population.
Insights
This study reveals novel actionable MET variants in South American lung cancer patients, emphasizing RNA-based diagnosis for METex14 and detailing drug sensitivity for targeted therapies.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- Targeted therapy for non-small-cell lung cancer (NSCLC) actionable variants is understudied in Latin American populations.
- Limited data exists on the prevalence and characteristics of these variants in this demographic.
Purpose of the Study:
- To investigate actionable MET variants in a South American NSCLC cohort.
- To evaluate RNA-based versus DNA-based detection of MET exon 14 skipping (METex14).
- To assess the pathogenicity and drug sensitivity of novel MET variants.
Main Methods:
- Next-generation sequencing (NGS) of 1560 NSCLC tumor biopsies from Chile, Brazil, and Peru.
- Correlation of RNA sequencing and DNA coverage for METex14 detection.
- Bioinformatic assessment of MET variants of uncertain significance (VUSs).
- Functional evaluation of novel variants (T992I, H1094Y) in cell lines and drug sensitivity testing with c-Met inhibitors.
Main Results:
- Prevalence of MET variants was 8% in the South American cohort.
- RNA-based diagnosis identified 27% more METex14 cases than DNA-based methods.
- Novel variants T992I and H1094Y promoted proliferation and migration via c-Met/Akt signaling.
- T992I and H1094Y showed sensitivity to crizotinib and savolitinib; H1094Y had reduced sensitivity to capmatinib.
Conclusions:
- RNA-based METex14 diagnosis is crucial for comprehensive detection.
- Novel actionable MET variants T992I and H1094Y have distinct drug sensitivity profiles.
- Findings provide insights into targeted therapy for NSCLC in an understudied population.
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