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Updated: Jul 16, 2025

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Mosaic BRAF Fusions Are a Recurrent Cause of Congenital Melanocytic Nevi Targetable by MAPK Pathway Inhibition
Sara Barberan Martin1, Satyamaanasa Polubothu2, Alicia Lopez Bruzos1
1Mosaicism and Precision Medicine laboratory, The Francis Crick Institute, London, United Kingdom; Genetics and Genomic Medicine, UCL Great Osmond Street Institute of Child Health, London, United Kingdom.
Abstract:
Among children with multiple congenital melanocytic nevi, 25% have no established genetic cause, of whom many develop a hyperproliferative and severely pruritic phenotype resistant to treatment. Gene fusions have been reported in individual cases of congenital melanocytic nevi. We studied 169 patients with congenital melanocytic nevi in this study, 38 of whom were double wild type for pathogenic NRAS/BRAF variants. Nineteen of these 38 patients had sufficient tissue to undergo RNA sequencing, which revealed mosaic BRAF fusions in 11 of 19 patients and mosaic RAF1 fusions in 1 of 19. Recurrently, fusions involved the loss of the 5´ regulatory domain of BRAF or RAF1 but preserved the kinase domain. We validated all cases and detected the fusions in two separate nevi in 5 of 12 patients, confirming clonality. The absence of the fusion in blood in 8 of 12 patients indicated mosaicism. Primary culture of BRAF-fusion nevus cells from 3 of 12 patients demonstrated highly increased MAPK activation, despite only mildly increased BRAF expression, suggesting additional mechanisms of kinase activation. Trametinib quenched MAPK hyperactivation in vitro, and treatment of two patients caused rapid improvement in bulk tissue, improving bodily movement and reducing inflammation and severe pruritus. These findings offer a genetic diagnosis to an additional group of patients and trametinib as a treatment option for the severe associated phenotypes.
Insights
Mosaic gene fusions in BRAF or RAF1 were identified in children with congenital melanocytic nevi lacking other genetic causes. These fusions may drive hyperproliferation and pruritus, with trametinib showing promising treatment results.
Area of Science:
- Genetics
- Dermatology
- Molecular Biology
Background:
- Congenital melanocytic nevi (CMN) can present with severe, treatment-resistant phenotypes.
- A significant portion of CMN cases lack identified genetic causes, hindering diagnosis and targeted therapy.
Purpose of the Study:
- To investigate the genetic underpinnings of CMN in patients without established NRAS/BRAF variants.
- To identify novel genetic alterations and potential therapeutic targets for severe CMN phenotypes.
Main Methods:
- RNA sequencing of nevus tissue from 19 patients with CMN and wild-type NRAS/BRAF.
- Validation of identified gene fusions through clonality and mosaicism studies.
- In vitro functional assays and in vivo treatment trials.
Main Results:
- Mosaic BRAF fusions were detected in 11/19 patients, and mosaic RAF1 fusions in 1/19.
- These fusions typically involve the loss of the 5´ regulatory domain, preserving kinase activity.
- BRAF-fusion nevus cells exhibited increased MAPK pathway activation; trametinib treatment improved clinical symptoms in two patients.
Conclusions:
- Mosaic BRAF and RAF1 fusions represent a novel genetic cause for a subset of CMN.
- These fusions activate the MAPK pathway, contributing to severe CMN phenotypes.
- Trametinib is a potential therapeutic option for patients with fusion-driven CMN.
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