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Updated: Sep 25, 2025

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
Molecular Pathways and Mechanisms of BRAF in Cancer Therapy
Poulikos I Poulikakos1, Ryan J Sullivan2, Rona Yaeger3
1Department of Oncological Sciences, Icahn School of Medicine at Mount Sinai, New York, New York.
Abstract:
With the identification of activating mutations in BRAF across a wide variety of malignancies, substantial effort was placed in designing safe and effective therapeutic strategies to target BRAF. These efforts have led to the development and regulatory approval of three BRAF inhibitors as well as five combinations of a BRAF inhibitor plus an additional agent(s) to manage cancer such as melanoma, non-small cell lung cancer, anaplastic thyroid cancer, and colorectal cancer. To date, each regimen is effective only in patients with tumors harboring BRAFV600 mutations and the duration of benefit is often short-lived. Further limitations preventing optimal management of BRAF-mutant malignancies are that treatments of non-V600 BRAF mutations have been less profound and combination therapy is likely necessary to overcome resistance mechanisms, but multi-drug regimens are often too toxic. With the emergence of a deeper understanding of how BRAF mutations signal through the RAS/MAPK pathway, newer RAF inhibitors are being developed that may be more effective and potentially safer and more rational combination therapies are being tested in the clinic. In this review, we identify the mechanics of RAF signaling through the RAS/MAPK pathway, present existing data on single-agent and combination RAF targeting efforts, describe emerging combinations, summarize the toxicity of the various agents in clinical testing, and speculate as to where the field may be headed.
Insights
Targeting BRAF mutations in cancer shows promise, but current therapies are limited to BRAFV600 mutations and often short-lived. Newer RAF inhibitors and combination therapies are being developed to overcome resistance and improve safety for BRAF-mutant cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Activating BRAF mutations are prevalent in various cancers, driving the development of targeted therapies.
- Current BRAF inhibitors and combinations are approved for specific cancers but are limited to BRAFV600 mutations and often result in short-lived benefits.
- Resistance mechanisms and toxicity of combination therapies pose significant challenges in managing BRAF-mutant malignancies.
Conclusions:
- Targeting BRAF mutations has advanced cancer treatment, but limitations persist for specific mutations and duration of response.
- Understanding RAS/MAPK pathway signaling is crucial for developing next-generation BRAF-targeted therapies.
- Future strategies likely involve safer, more effective RAF inhibitors and rational combination regimens to enhance patient outcomes in BRAF-mutant cancers.
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