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Updated: Dec 27, 2025

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
Melanomas with activating RAF1 fusions: clinical, histopathologic, and molecular profiles
Erik A Williams1, Nikunj Shah2, Meagan Montesion2
1Foundation Medicine, Inc., 150 Second Street, Cambridge, MA, 02141, USA. erwilliams@foundationmedicine.com.
Abstract:
A subset of melanomas is characterized by fusions involving genes that encode kinases. Melanomas with RAF1 fusions have been rarely reported, mostly in clinical literature. To investigate this distinctive group of melanomas, we searched for melanomas with activating structural variants in RAF1, utilizing our case archive of clinical samples with comprehensive genomic profiling (CGP) by a hybrid capture-based DNA sequencing platform. Clinical data, pathology reports, and histopathology were reviewed for each case. RAF1 breakpoints, fusion partners, and co-occurring genetic alterations were characterized. From a cohort of 7119 melanomas, 40 cases (0.6%) featured fusions that created activating structural variants in RAF1. Cases with activating RAF1 fusions had median age of 62 years, were 58% male, and consisted of 9 primary tumors and 31 metastases. Thirty-nine cases were cutaneous primary, while one case was mucosal (anal) primary. Primary cutaneous melanomas showed variable architectures, including wedge-shaped and nodular growth patterns. Cytomorphology was predominantly epithelioid, with only one case, a desmoplastic melanoma, consisting predominantly of spindle cells. RAF1 5' rearrangement partners were predominantly intrachromosomal (n = 18), and recurrent partners included MAP4 (n = 3), CTNNA1 (n = 2), LRCH3 (n = 2), GOLGA4 (n = 2), CTDSPL (n = 2), and PRKAR2A (n = 2), all 5' of the region encoding the kinase domain. RAF1 breakpoints occurred in intron 7 (n = 32), intron 9 (n = 4), intron 5 (n = 2), and intron 6 (n = 2). Ninety-eight percent (n = 39) were wild type for BRAF, NRAS, and NF1 genomic alterations (triple wild type). Activating RAF1 fusions were present in 2.1% of triple wild-type melanomas overall (39/1882). In melanomas with activating RAF1 fusions, frequently mutated genes included TERTp (62%), CDKN2A (60%), TP53 (13%), ARID2 (10%), and PTEN (10%). Activating RAF1 fusions characterize a significant subset of triple wild-type melanoma (2.1%) with frequent accompanying mutations in TERTp and CDKN2A. CGP of melanomas may improve tumor classification and inform potential therapeutic options, such as consideration of specific kinase inhibitors.
Insights
Activating RAF1 fusions were identified in 0.6% of melanomas, primarily in triple wild-type cases. These fusions are significant in melanoma classification and may guide targeted therapy selection.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- A subset of melanomas exhibits gene fusions encoding kinases.
- RAF1 fusions are infrequently reported in melanoma, often confined to clinical literature.
Purpose of the Study:
- To identify and characterize melanomas with activating structural variants in RAF1.
- To investigate the clinical and genomic features of RAF1-fusion-positive melanomas.
Main Methods:
- Comprehensive genomic profiling (CGP) using a hybrid capture-based DNA sequencing platform on a clinical sample archive.
- Review of clinical data, pathology reports, and histopathology for identified cases.
- Characterization of RAF1 breakpoints, fusion partners, and co-occurring genetic alterations.
Main Results:
- Forty out of 7119 melanomas (0.6%) harbored activating RAF1 fusions.
- These fusions were predominantly found in triple wild-type melanomas (2.1% of cases).
- Commonly co-occurring mutations included TERTp (62%) and CDKN2A (60%).
Conclusions:
- Activating RAF1 fusions represent a distinct molecular subtype of triple wild-type melanoma.
- CGP aids in classifying melanomas and identifying potential therapeutic targets, such as kinase inhibitors.
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