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Updated: Jan 23, 2026

A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Identification of Targetable Recurrent MAP3K8 Rearrangements in Melanomas Lacking Known Driver Mutations
Brian D Lehmann1, Timothy M Shaver2, Douglas B Johnson3
1Department of Biochemistry, Vanderbilt University, Nashville, Tennessee. brian.d.lehmann@vumc.org.
Abstract:
Melanomas are characterized by driver and loss-of-function mutations that promote mitogen-activated protein kinase (MAPK) signaling. MEK inhibitors are approved for use in BRAF-mutated melanoma; however, early-phase clinical trials show occasional responses in driver-negative melanoma, suggesting other alterations conferring MAPK/ERK dependency. To identify additional structural alterations in melanoma, we evaluated RNA-Seq from a set of known MAPK/ERK regulators using a novel population-based algorithm in The Cancer Genome Atlas (TCGA). We identified recurrent MAP3K8 rearrangements in 1.7% of melanomas in TCGA, occurring in more than 15% of tumors without known driver mutations (BRAF, NRAS, KIT, GNAQ, GNA11, and NF1). Using an independent tumor set, we validated a similar rearrangement frequency by FISH. MAP3K8-rearranged melanomas exhibit a low mutational burden and absence of typical UV-mutational patterns. We identified two melanoma cell lines that harbor endogenous truncating MAP3K8 rearrangements that demonstrate exquisite dependency. Rearrangement and amplification of the MAP3K8 locus in melanoma cells result in increased levels of a truncated, active MAP3K8 protein; oncogenic dependency on the aberrant MAP3K8; and a concomitant resistance to BRAF inhibition and sensitivity to MEK or ERK1/2 inhibition. Our findings reveal and biochemically characterize targetable oncogenic MAP3K8 truncating rearrangements in driver mutation-negative melanoma, and provide insight to therapeutic approaches for patients with these tumors. These data provide rationale for using MEK or ERK inhibitors in a subset of driver-negative, MAPK/ERK-dependent melanomas harboring truncating MAP3K8 rearrangements. IMPLICATIONS: This is the first mechanistic study and therapeutic implications of truncating MAP3K8 rearrangements in driver-negative melanoma.
Insights
New melanoma research identifies MAP3K8 rearrangements as a targetable driver in tumors lacking common mutations. This finding suggests MEK or ERK inhibitors may benefit patients with these specific melanoma types.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Melanomas often have mutations affecting mitogen-activated protein kinase (MAPK) signaling.
- While MEK inhibitors work for BRAF-mutated melanoma, some driver-negative cases respond, hinting at other MAPK/ERK dependencies.
Purpose of the Study:
- To identify novel structural alterations driving melanoma, particularly in tumors lacking known mutations.
- To investigate the role of MAP3K8 rearrangements in melanoma pathogenesis and therapeutic response.
Main Methods:
- Utilized RNA-Seq data from The Cancer Genome Atlas (TCGA) and a novel population-based algorithm.
- Analyzed MAPK/ERK pathway regulators for structural alterations.
- Validated findings using fluorescence in situ hybridization (FISH) on an independent tumor set and studied melanoma cell lines.
Main Results:
- Discovered recurrent MAP3K8 rearrangements in 1.7% of TCGA melanomas, found in over 15% of tumors lacking common drivers (BRAF, NRAS, KIT, GNAQ, GNA11, NF1).
- MAP3K8-rearranged melanomas showed low mutational burden and lacked typical UV-induced mutation patterns.
- Truncating MAP3K8 rearrangements in cell lines led to increased active truncated protein, oncogenic dependency, resistance to BRAF inhibitors, and sensitivity to MEK/ERK inhibitors.
Conclusions:
- Identified and characterized targetable, oncogenic MAP3K8 truncating rearrangements in driver-negative melanoma.
- These rearrangements create dependency on aberrant MAP3K8, offering therapeutic opportunities.
- Supports the use of MEK or ERK inhibitors for a subset of driver-negative melanomas with MAP3K8 rearrangements.
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