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Updated: Jun 22, 2025

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
Pathways and targeting avenues of BRAF in non-small cell lung cancer
Evgeny N Imyanitov1,2, Natalia V Mitiushkina1, Ekatherina Sh Kuligina1
1Department of Tumor Growth Biology, N.N. Petrov Institute of Oncology, St.-Petersburg, Russia.
Introduction:
BRAF is a serine-threonine kinase implicated in the regulation of MAPK signaling cascade. BRAF mutation-driven activation occurs in approximately 2-4% of treatment-naive non-small cell carcinomas (NSCLCs). BRAF upregulation is also often observed in tumors with acquired resistance to receptor tyrosine kinase inhibitors (TKIs).
Areas Covered:
This review describes the spectrum of BRAF mutations and their functional roles, discusses treatment options available for BRAF p.V600 and non-V600 mutated NSCLCs, and identifies some gaps in the current knowledge.
Expert Opinion:
Administration of combined BRAF/MEK inhibitors usually produces significant, although often a short-term, benefit to NSCLC patients with BRAF V600 (class 1) mutations. There are no established treatments for BRAF class 2 (L597, K601, G464, G469A/V/R/S, fusions, etc.) and class 3 (D594, G596, G466, etc.) mutants, which account for up to two-thirds of BRAF-driven NSCLCs. Many important issues related to the use of immune therapy for the management of BRAF-mutated NSCLC deserve further investigation. The rare occurrence of BRAF mutations in NSCLC is compensated by high overall incidence of lung cancer disease; therefore, clinical studies on BRAF-associated NSCLC are feasible.
Insights
BRAF mutations drive some non-small cell lung cancers (NSCLCs). While BRAF/MEK inhibitors benefit V600-mutated NSCLC, other BRAF mutations lack targeted treatments, necessitating further research.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- BRAF is a kinase regulating the MAPK pathway.
- BRAF mutations drive 2-4% of non-small cell lung cancers (NSCLCs).
- BRAF upregulation is linked to resistance against receptor tyrosine kinase inhibitors (TKIs).
Purpose of the Study:
- To review BRAF mutations and their roles in NSCLC.
- To discuss treatments for BRAF-mutated NSCLC.
- To identify knowledge gaps in BRAF-mutated NSCLC management.
Main Methods:
- Literature review of BRAF mutations in NSCLC.
- Analysis of current treatment strategies.
- Identification of research needs.
Main Results:
- BRAF/MEK inhibitors offer short-term benefits for V600-mutated NSCLC.
- Class 2 and 3 BRAF mutations (up to two-thirds of cases) lack established treatments.
- Immune therapy for BRAF-mutated NSCLC requires further investigation.
Conclusions:
- Targeted therapies are limited for non-V600 BRAF mutations in NSCLC.
- Further research is needed for effective treatments, including immunotherapy.
- Clinical studies are feasible due to the high incidence of lung cancer.
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