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Updated: Apr 5, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
The transcription cofactor c-JUN mediates phenotype switching and BRAF inhibitor resistance in melanoma
Rachel Ramsdale1, Robert N Jorissen2, Frederic Z Li3
1Molecular Oncology Laboratory, Peter MacCallum Cancer Centre, St. Andrew's Place, East Melbourne, Victoria 3002, Australia. Oncogenic Signalling and Growth Control Program, Peter MacCallum Cancer Centre, East Melbourne, Victoria 3002, Australia.
Abstract:
Most patients with BRAF-mutant metastatic melanoma display remarkable but incomplete and short-lived responses to inhibitors of the BRAF kinase or the mitogen-activated protein kinase kinase (MEK), collectively BRAF/MEK inhibitors. We found that inherent resistance to these agents in BRAF(V600)-mutant melanoma cell lines was associated with high abundance of c-JUN and characteristics of a mesenchymal-like phenotype. Early drug adaptation in drug-sensitive cell lines grown in culture or as xenografts, and in patient samples during therapy, was consistently characterized by down-regulation of SPROUTY4 (a negative feedback regulator of receptor tyrosine kinases and the BRAF-MEK signaling pathway), increased expression of JUN and reduced expression of LEF1. This coincided with a switch in phenotype that resembled an epithelial-mesenchymal transition (EMT). In cultured cells, these BRAF inhibitor-induced changes were reversed upon removal of the drug. Knockdown of SPROUTY4 was sufficient to increase the abundance of c-JUN in the absence of drug treatment. Overexpressing c-JUN in drug-naïve melanoma cells induced similar EMT-like phenotypic changes to BRAF inhibitor treatment, whereas knocking down JUN abrogated the BRAF inhibitor-induced early adaptive changes associated with resistance and enhanced cell death. Combining the BRAF inhibitor with an inhibitor of c-JUN amino-terminal kinase (JNK) reduced c-JUN phosphorylation, decreased cell migration, and increased cell death in melanoma cells. Gene expression data from a panel of melanoma cell lines and a patient cohort showed that JUN expression correlated with a mesenchymal gene signature, implicating c-JUN as a key mediator of the mesenchymal-like phenotype associated with drug resistance.
Insights
Melanoma cells develop resistance to BRAF/MEK inhibitors by increasing c-JUN and adopting a mesenchymal-like phenotype. Targeting c-JUN with JNK inhibitors can overcome this resistance, enhancing cell death in BRAF-mutant melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- BRAF/MEK inhibitors show limited efficacy in BRAF-mutant metastatic melanoma due to incomplete and transient responses.
- Inherent and adaptive resistance mechanisms contribute to treatment failure in melanoma patients.
Purpose of the Study:
- To investigate the molecular mechanisms underlying BRAF/MEK inhibitor resistance in BRAF-mutant melanoma.
- To identify key mediators of drug resistance and explore potential therapeutic strategies.
Main Methods:
- Analysis of melanoma cell lines and patient samples treated with BRAF/MEK inhibitors.
- Gene expression profiling, including SPROUTY4, JUN, and LEF1.
- In vitro experiments involving gene knockdown and overexpression (SPROUTY4, JUN).
- Combination therapy studies using BRAF inhibitors and c-JUN amino-terminal kinase (JNK) inhibitors.
Main Results:
- Inherent resistance and early drug adaptation were associated with high c-JUN abundance and a mesenchymal-like phenotype.
- Drug treatment led to decreased SPROUTY4 and increased JUN expression, mimicking an epithelial-mesenchymal transition (EMT).
- c-JUN overexpression induced EMT-like changes, while JUN knockdown sensitized cells to BRAF inhibitors and enhanced cell death.
- Combination therapy with BRAF and JNK inhibitors reduced c-JUN phosphorylation, decreased cell migration, and increased cell death.
Conclusions:
- c-JUN is a key mediator of the mesenchymal-like phenotype and drug resistance in BRAF-mutant melanoma.
- Targeting c-JUN, potentially through JNK inhibition, represents a promising strategy to overcome BRAF/MEK inhibitor resistance.
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