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Updated: Jan 24, 2026

Direct Reprogramming of Mouse Fibroblasts into Melanocytes
Published on: August 27, 2021
The role of gene fusions in melanocytic neoplasms
Victor L Quan1, Elnaz Panah1, Bin Zhang1
1Department of Dermatology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois.
Abstract:
Recent advances in next generation sequencing (NGS) have allowed for efficient whole transcriptome sequencing, leading to the identification of important kinase fusions as the primary driver in some melanocytic neoplasms. These fusions typically occur mutually exclusively of one another and other well-known initiating mutations such as BRAF, NRAS, NF1, KIT, and GNAQ. Fusions are found in over 50% of Spitz neoplasms, including ALK, BRAF, NTRK1, NTRK3, ROS1, MET, MAP3K8, and RET. Familiarity with the typical morphologic features of certain fusion-driven melanocytic neoplasms can help with classification, diagnosis, and identification of targeted molecular therapies in malignant cases. Spitz tumors with ALK, NTRK1, and NTRK3 fusions have characteristic morphologic features. BRAF and MAP3K8 fusions, in particular, tend to be epithelioid, high grade, and more frequent in Spitz melanoma than other fusion subtypes. Sporadic cases of pigmented epithelioid melanocytoma may have PRKCA fusions and sheets of monomorphic epithelioid melanocytes. Fusion events are also enriched among melanomas without the key mutations BRAF, NRAS, or NF1. Although NGS is the most reliable method to detect fusions, immunohistochemistry and fluorescence in situ hybridization are cost-effective alternatives in some cases. We describe recent discoveries regarding the role of kinase fusions in melanocytic neoplasms and their associated morphologies.
Insights
Kinase fusions drive over half of Spitz neoplasms and some melanomas, offering new diagnostic and therapeutic targets. Understanding these genetic alterations and their distinct morphologies is crucial for accurate classification and treatment.
Area of Science:
- Oncology
- Genetics
- Dermatopathology
Background:
- Next-generation sequencing (NGS) enables whole transcriptome analysis, revealing kinase fusions as key drivers in melanocytic neoplasms.
- These fusions often occur independently of common mutations like BRAF, NRAS, NF1, KIT, and GNAQ.
Purpose of the Study:
- To review recent discoveries on kinase fusions in melanocytic neoplasms.
- To correlate specific fusion types with characteristic morphologies for improved diagnosis and targeted therapy identification.
Main Methods:
- Literature review of studies utilizing NGS for transcriptome sequencing.
- Analysis of morphologic features associated with identified kinase fusions.
- Discussion of immunohistochemistry and fluorescence in situ hybridization as alternative detection methods.
Main Results:
- Kinase fusions are identified in over 50% of Spitz neoplasms (e.g., ALK, BRAF, NTRK1, NTRK3, ROS1, MET, MAP3K8, RET).
- Specific fusions (BRAF, MAP3K8) are linked to epithelioid, high-grade Spitz melanomas.
- PRKCA fusions are observed in pigmented epithelioid melanocytoma.
- Fusion events are prevalent in melanomas lacking common mutations.
Conclusions:
- Kinase fusions represent significant drivers in diverse melanocytic neoplasms.
- Recognizing fusion-associated morphologies aids in classification and guides targeted therapy selection for malignant cases.
- While NGS is definitive, IHC and FISH offer practical diagnostic alternatives.
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