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Correlation of MET gene amplification and TP53 mutation with PD-L1 expression in non-small cell lung cancer
Maher Albitar1, Sucha Sudarsanam1, Wanlong Ma1
1NeoGenomics Laboratories, Aliso Viejo, CA, USA.
Background:
The role of MET amplification in lung cancer, particularly in relation to checkpoint inhibition and EGFR WT, has not been fully explored. In this study, we correlated PD-L1 expression with MET amplification and EGFR, KRAS, or TP53 mutation in primary lung cancer.
Methods:
In this retrospective study, tissue collected from 471 various tumors, including 397 lung cancers, was tested for MET amplification by FISH with a MET/centromere probe. PD-L1 expression was evaluated using clone SP142 and standard immunohistochemistry, and TP53, KRAS, and EGFR mutations were tested using next generation sequencing.
Results:
Our results revealed that PD-L1 expression in non-small cell lung cancer is inversely correlated with EGFR mutation (P=0.0003), and positively correlated with TP53 mutation (P=0.0001) and MET amplification (P=0.004). Patients with TP53 mutations had significantly higher MET amplification (P=0.007), and were more likely (P=0.0002) to be EGFR wild type. There was no correlation between KRAS mutation and overall PD-L1 expression, but significant positive correlation between PD-L1 expression and KRAS with TP53 co-mutation (P=0.0002). A cut-off for the ratio of MET: centromere signal was determined as 1.5%, and 4% of lung cancer patients were identified as MET amplified.
Conclusions:
This data suggests that in lung cancer both MET and TP53 play direct roles in regulating PD-L1 opposing EGFR. Moreover, KRAS and TP53 co-mutation may cooperate to drive PD-L1 expression in lung cancer. Adding MET or TP53 inhibitors to checkpoint inhibitors may be an attractive combination therapy in patients with lung cancer and MET amplification.
Insights
MET amplification and TP53 mutations are linked to higher PD-L1 expression in lung cancer, suggesting combination therapies. MET amplification was found in 4% of lung cancer patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The role of MET amplification in lung cancer, especially concerning checkpoint inhibition and EGFR wild-type status, requires further investigation.
- This study explores the correlation between PD-L1 expression and MET amplification, alongside EGFR, KRAS, or TP53 mutations in primary lung cancer.
Purpose of the Study:
- To investigate the relationship between PD-L1 expression and genetic alterations including MET amplification, EGFR, KRAS, and TP53 mutations in lung cancer.
- To determine the clinical implications of these correlations for targeted therapies.
Main Methods:
- Retrospective analysis of 397 lung cancer tissue samples.
- MET amplification assessed by FISH; PD-L1 expression by immunohistochemistry; EGFR, KRAS, and TP53 mutations by next-generation sequencing.
Main Results:
- PD-L1 expression inversely correlated with EGFR mutation (P=0.0003) and positively with TP53 mutation (P=0.0001) and MET amplification (P=0.004).
- TP53 mutations were associated with higher MET amplification (P=0.007) and EGFR wild-type status (P=0.0002).
- MET amplification identified in 4% of lung cancer patients; KRAS and TP53 co-mutation positively correlated with PD-L1 expression (P=0.0002).
Conclusions:
- MET and TP53 mutations appear to directly regulate PD-L1 expression in lung cancer, opposing EGFR.
- KRAS and TP53 co-mutations may synergistically drive PD-L1 expression.
- Combination therapy with MET or TP53 inhibitors and checkpoint inhibitors may benefit lung cancer patients with MET amplification.
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