Target intelligence / Profile preview

Rapidly accelerated fibrosarcoma family kinase (RAF) (RAF)

Target
RAF
Molecular classification
Enzyme, Serine/threonine-protein kinase, TKL (Tyrosine kinase-like) family
01

Overview

The Rapidly accelerated fibrosarcoma (RAF) family kinase, comprising A-Raf, B-Raf, and C-Raf (Raf-1), is an essential group of serine/threonine-specific protein kinases that function as key mediators in the highly conserved Ras-Raf-MEK-ERK (MAPK) signaling pathway [1, 2, 7]. These kinases are recruited to the plasma membrane and activated by Ras-GTPases in response to extracellular growth factors, subsequently phosphorylating and activating MEK1/2 [5, 9]. This signaling cascade is a fundamental regulator of vital cellular processes, including proliferation, differentiation, survival, and apoptosis [4, 7]. Dysregulation of RAF kinases, particularly through activating mutations in the BRAF gene (such as the V600E substitution), is a major driver of oncogenesis in various human malignancies, including melanoma, colorectal cancer, and thyroid cancer [7, 10, 11]. In the clinical setting, RAF kinases are prominent therapeutic targets, with several small-molecule inhibitors approved for the treatment of BRAF-mutant cancers [6, 9]. These drugs typically act as ATP-competitive inhibitors that block the kinase activity of mutant B-Raf, thereby suppressing the downstream MAPK pathway [6, 10]. However, the use of first-generation RAF inhibitors is often complicated by the "RAF paradox," where the drug induces paradoxical activation of the MAPK pathway in cells with wild-type BRAF and mutant RAS, potentially leading to secondary skin cancers [10, 11]. Ongoing research focuses on developing next-generation "paradox-breaker" inhibitors and pan-RAF inhibitors to overcome resistance mechanisms and improve safety profiles [6, 8].

Other names
A-RafB-RafC-RafRaf-1v-Rafv-MilProto-oncogene A-Raf-1v-raf murine sarcoma viral oncogene homolog B1
02

Mechanism of action

Inhibition of kinase activity through ATP-competitive binding, prevention of RAF dimerization, and disruption of the RAS-RAF-MEK-ERK signaling cascade.

03

Biological functions

Signal transductionCell proliferationCell differentiationCell survivalApoptosisCell cycle regulationCell motilityMigrationWound healing
04

Disease associations

CancerRASopathyNoonan syndromeLEOPARD syndrome
05

Safety considerations

Paradoxical activation of the MAPK pathway in BRAF wild-type cellsDevelopment of secondary cutaneous squamous cell carcinomasAcquired drug resistance through RAF dimerization or bypass signalingDermatological toxicities such as rash and photosensitivity
06

Interacting drugs

Vemurafenib

9 more in the full profile.

07

Biomarkers

BRAF V600E mutationBRAF V600K mutationBRAF V600D mutationBRAF V600R mutationPhospho-ERK levels

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