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Updated: Sep 1, 2025

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
Clinical Activity of Mitogen-Activated Protein Kinase-Targeted Therapies in Patients With Non-V600 BRAF-Mutant Tumors
Matthew Dankner1,2,3, Yifan Wang2,3,4,5, Rouhi Fazelzad6,7
1Lady Davis Institute, Segal Cancer Centre, Jewish General Hospital, McGill University, Montréal, Québec, Canada.
Purpose:
Non-V600 mutations comprise approximately 35% of all BRAF mutations in cancer. Many of these mutations have been identified as oncogenic drivers and can be classified into three classes according to molecular characteristics. Consensus treatment strategies for class 2 and 3 BRAF mutations have not yet been established.
Methods:
We performed a systematic review and meta-analysis with published reports of individual patients with cancer harboring class 2 or 3 BRAF mutations from 2010 to 2021, to assess treatment outcomes with US Food and Drug Administration-approved mitogen-activated protein kinase (MAPK) pathway targeted therapy (MAPK TT) according to BRAF class, cancer type, and MAPK TT type. Coprimary outcomes were response rate and progression-free survival.
Results:
A total of 18,167 studies were screened, identifying 80 studies with 238 patients who met inclusion criteria. This included 167 patients with class 2 and 71 patients with class 3 BRAF mutations. Overall, 77 patients achieved a treatment response. In both univariate and multivariable analyses, response rate and progression-free survival were higher among patients with class 2 compared with class 3 mutations, findings that remain when analyses are restricted to patients with melanoma or lung primary cancers. MEK ± BRAF inhibitors demonstrated greater clinical activity in class 2 compared with class 3 BRAF-mutant tumors than BRAF or EGFR inhibitors.
Conclusion:
This meta-analysis suggests that MAPK TTs have clinical activity in some class 2 and 3 BRAF-mutant cancers. BRAF class may dictate responsiveness to current and emerging treatment strategies, particularly in melanoma and lung cancers. Together, this analysis provides clinical validation of predictions made on the basis of a mutation classification system established in the preclinical literature. Further evaluation with prospective clinical trials is needed for this population.
Insights
Targeted therapies show activity in BRAF-mutant cancers. Class 2 BRAF mutations responded better than class 3 to MAPK targeted therapy, especially in melanoma and lung cancers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Non-V600 BRAF mutations occur in 35% of cancers.
- These mutations are oncogenic drivers classified into three classes.
- Treatment strategies for class 2 and 3 BRAF mutations are not established.
Purpose of the Study:
- To systematically review and meta-analyze treatment outcomes for class 2 and 3 BRAF mutations.
- To assess the efficacy of MAPK pathway targeted therapy (MAPK TT).
- To compare outcomes based on BRAF class, cancer type, and MAPK TT type.
Main Methods:
- Systematic review and meta-analysis of published reports (2010-2021).
- Included 238 patients with class 2 or 3 BRAF mutations.
- Coprimary outcomes: response rate and progression-free survival.
Main Results:
- Response rate and progression-free survival were higher in class 2 vs. class 3 BRAF mutations.
- Findings consistent in melanoma and lung cancers.
- MEK ± BRAF inhibitors showed greater activity in class 2 vs. class 3 BRAF-mutant tumors.
Conclusions:
- MAPK TTs have clinical activity in class 2 and 3 BRAF-mutant cancers.
- BRAF class may influence treatment response, particularly in melanoma and lung cancers.
- Further prospective trials are needed.
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