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Updated: Feb 21, 2026

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
New perspectives for targeting RAF kinase in human cancer
Zoi Karoulia1, Evripidis Gavathiotis2, Poulikos I Poulikakos1
1Department of Oncological Sciences and Department of Dermatology, The Tisch Cancer Institute, Icahn School of Medicine at Mount Sinai, New York, New York 10029, USA.
Abstract:
The discovery that a subset of human tumours is dependent on mutationally deregulated BRAF kinase intensified the development of RAF inhibitors to be used as potential therapeutics. The US Food and Drug Administration (FDA)-approved second-generation RAF inhibitors vemurafenib and dabrafenib have elicited remarkable responses and improved survival of patients with BRAF-V600E/K melanoma, but their effectiveness is limited by resistance. Beyond melanoma, current clinical RAF inhibitors show modest efficacy when used for colorectal and thyroid BRAF-V600E tumours or for tumours harbouring BRAF alterations other than the V600 mutation. Accumulated experimental and clinical evidence indicates that the complex biochemical mechanisms of RAF kinase signalling account both for the effectiveness of RAF inhibitors and for the various mechanisms of tumour resistance to them. Recently, a number of next-generation RAF inhibitors, with diverse structural and biochemical properties, have entered preclinical and clinical development. In this Review, we discuss the current understanding of RAF kinase regulation, mechanisms of inhibitor action and related clinical resistance to these drugs. The recent elucidation of critical structural and biochemical aspects of RAF inhibitor action, combined with the availability of a number of structurally diverse RAF inhibitors currently in preclinical and clinical development, will enable the design of more effective RAF inhibitors and RAF-inhibitor-based therapeutic strategies, tailored to different clinical contexts.
Insights
RAF inhibitors show promise for BRAF-mutant cancers but face resistance. Next-generation inhibitors and tailored strategies are being developed to overcome these limitations and improve patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Drug Development
Background:
- Mutationally deregulated BRAF kinase is a key driver in a subset of human tumors.
- FDA-approved RAF inhibitors (vemurafenib, dabrafenib) show efficacy in BRAF-V600E/K melanoma but are limited by resistance.
- Current RAF inhibitors have modest efficacy in other cancers (colorectal, thyroid) and non-V600 BRAF mutations.
Purpose of the Study:
- To review the current understanding of RAF kinase regulation and inhibitor mechanisms.
- To discuss mechanisms of tumor resistance to RAF inhibitors.
- To highlight the development of next-generation RAF inhibitors and future therapeutic strategies.
Main Methods:
- Literature review of experimental and clinical evidence on RAF kinase signaling.
- Analysis of biochemical mechanisms underlying RAF inhibitor action and resistance.
- Discussion of preclinical and clinical data for novel RAF inhibitors.
Main Results:
- RAF kinase signaling complexity contributes to both drug efficacy and resistance.
- Diverse mechanisms of resistance limit the effectiveness of current RAF inhibitors.
- Next-generation RAF inhibitors with varied properties are emerging.
Conclusions:
- Understanding RAF kinase regulation and resistance mechanisms is crucial for therapeutic advancement.
- Next-generation RAF inhibitors and combination strategies hold promise for improved cancer treatment.
- Tailored therapeutic strategies based on RAF inhibitor action and resistance profiles are essential for different clinical contexts.
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