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Updated: Nov 14, 2025

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
RAF-Mutant Melanomas Differentially Depend on ERK2 Over ERK1 to Support Aberrant MAPK Pathway Activation and Cell
Matthew S Crowe1, Tatiana Zavorotinskaya2, Charles F Voliva2
1Oncology, Novartis Institutes for BioMedical Research, Cambridge, Massachusetts.
Abstract:
Half of advanced human melanomas are driven by mutant BRAF and dependent on MAPK signaling. Interestingly, the results of three independent genetic screens highlight a dependency of BRAF-mutant melanoma cell lines on BRAF and ERK2, but not ERK1. ERK2 is expressed higher in melanoma compared with other cancer types and higher than ERK1 within melanoma. However, ERK1 and ERK2 are similarly required in primary human melanocytes transformed with mutant BRAF and are expressed at a similar, lower amount compared with established cancer cell lines. ERK1 can compensate for ERK2 loss as seen by expression of ERK1 rescuing the proliferation arrest mediated by ERK2 loss (both by shRNA or inhibition by an ERK inhibitor). ERK2 knockdown, as opposed to ERK1 knockdown, led to more robust suppression of MAPK signaling as seen by RNA-sequencing, qRT-PCR, and Western blot analysis. In addition, treatment with MAPK pathway inhibitors led to gene expression changes that closely resembled those seen upon knockdown of ERK2 but not ERK1. Together, these data demonstrate that ERK2 drives BRAF-mutant melanoma gene expression and proliferation as a function of its higher expression compared with ERK1. Selective inhibition of ERK2 for the treatment of melanomas may spare the toxicity associated with pan-ERK inhibition in normal tissues. IMPLICATIONS: BRAF-mutant melanomas overexpress and depend on ERK2 but not ERK1, suggesting that ERK2-selective inhibition may be toxicity sparing.
Insights
BRAF-mutant melanomas depend on ERK2, not ERK1, for proliferation and gene expression. Selective ERK2 inhibition may reduce side effects in melanoma treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- BRAF mutations drive approximately half of advanced human melanomas.
- These melanomas rely on the MAPK signaling pathway for growth and survival.
Purpose of the Study:
- To investigate the specific roles of ERK1 and ERK2 in BRAF-mutant melanoma.
- To determine if selective targeting of ERK isoforms could offer a less toxic therapeutic strategy.
Main Methods:
- Genetic screens in BRAF-mutant melanoma cell lines.
- RNA sequencing, qRT-PCR, and Western blot analysis.
- ERK1/ERK2 knockdown and MAPK pathway inhibitor treatments.
Main Results:
- BRAF-mutant melanoma cells show a dependency on ERK2, with higher expression compared to ERK1.
- ERK1 can compensate for ERK2 loss, but ERK2 knockdown more effectively suppresses MAPK signaling.
- Gene expression changes from MAPK inhibitors mimic ERK2 knockdown, not ERK1 knockdown.
Conclusions:
- ERK2 is the primary driver of gene expression and proliferation in BRAF-mutant melanomas due to its overexpression.
- Selective inhibition of ERK2 presents a potential therapeutic strategy to spare normal tissues from toxicities associated with pan-ERK inhibition.
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