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Published on: July 21, 2018
Co-occurrence of targetable mutations in Non-small cell lung cancer (NSCLC) patients harboring MAP2K1 mutations
Matthias Scheffler1, Alessandra Holzem1, Anna Kron1
1University Hospital of Cologne, Lung Cancer Group Cologne, Department I of Internal Medicine, Cologne, Germany.
Background:
MAP2K1 mutations are rare in non-small cell lung cancer (NSCLC) and considered to be mutually exclusive from known driver mutations. Activation of the MEK1-cascade is considered pivotal in resistance to targeted therapy approaches, and MAP2K1 K57 N mutation could be linked to resistance in preclinical models. We set out this study to detect MAP2K1 mutations and potentially targetable co-mutations using a molecular multiplex approach.
Methods:
Between 2012 and 2018, we routinely analyzed 14.512 NSCLC patients with two next-generation sequencing (NGS) panels. In a subset of patients, fluorescence in-situ hybridization was performed to detect rearrangements or amplifications. We assessed clinical parameters and co-occurring mutations and compared treatment outcomes of different forms of systemic therapy.
Results:
We identified 66 (0.5%) patients with MAP2K1 mutations. Both adenocarcinoma (n = 62) and squamous cell carcinoma (n = 4) histology. The presence of the mutations was linked to smoking, and transversions were more common than transitions. K57 N was the most frequent MAP2K1 mutation (n = 25). Additional mutations were found in 57 patients (86.4%). Mutations of TP53 were detected in 33 patients, followed by KEAP1 mutations in 28.1%. 24 patients (36.4%) had either MAP2K1-only or a co-occurring aberration considered targetable, including EGFR mutations, a BRAF V600E mutation and ROS1 rearrangements. Outcome analyses revealed a trend toward benefit from pemetrexed treatment.
Conclusion:
Our analysis shows that MAP2K1-mutated NSCLC patients might frequently present with potentially targetable aberrations. Their role in providing resistance in these subtypes and the possible therapeutic opportunities justify further analyses of this rare NSCLC subgroup.
Insights
MAP2K1 mutations are rare in non-small cell lung cancer (NSCLC) but can co-occur with targetable mutations. These findings suggest potential new therapeutic strategies for this rare NSCLC subgroup.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- MAP2K1 mutations are uncommon in non-small cell lung cancer (NSCLC) and typically exclusive of known driver mutations.
- MEK1-cascade activation is implicated in resistance to targeted therapies, with MAP2K1 K57N mutations showing potential links to resistance in preclinical models.
Purpose of the Study:
- To identify MAP2K1 mutations in NSCLC patients.
- To detect potentially targetable co-mutations in conjunction with MAP2K1 mutations.
- To investigate the clinical significance and therapeutic implications of MAP2K1 mutations in NSCLC.
Main Methods:
- Analysis of 14,512 NSCLC patients using next-generation sequencing (NGS) panels between 2012 and 2018.
- Utilized fluorescence in-situ hybridization for detecting rearrangements or amplifications in a subset of patients.
- Assessed clinical parameters, co-occurring mutations, and compared treatment outcomes across different systemic therapies.
Main Results:
- Identified MAP2K1 mutations in 66 (0.5%) NSCLC patients, predominantly in adenocarcinoma.
- The K57N mutation was the most frequent MAP2K1 alteration; TP53 and KEAP1 mutations were common co-occurring alterations.
- 36.4% of patients with MAP2K1 mutations had targetable co-occurring aberrations, including EGFR, BRAF V600E, and ROS1 alterations.
- A trend towards benefit from pemetrexed treatment was observed in outcome analyses.
Conclusions:
- MAP2K1-mutated NSCLC patients frequently exhibit potentially targetable aberrations.
- The role of these mutations in treatment resistance and potential therapeutic avenues warrants further investigation.
- This rare NSCLC subgroup may benefit from further detailed analysis and targeted therapeutic strategies.
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