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Updated: May 8, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
BRD4 sustains melanoma proliferation and represents a new target for epigenetic therapy
Miguel F Segura1, Bárbara Fontanals-Cirera, Avital Gaziel-Sovran
1Authors' Affiliations: Departments of Pathology and Dermatology, New York University School of Medicine; Interdisciplinary Melanoma Cooperative Group, New York University Cancer Institute, New York University Langone Medical Center; Departments of Structural and Chemical Biology and Medicine, Icahn School of Medicine at Mount Sinai, New York, New York; Instituto de Salud Carlos III, Majadahonda, Madrid; and Laboratory of Translational Research in Childhood Cancer, Vall d'Hebrón Institut de Recerca (VHIR), Barcelona, Spain.
Abstract:
Metastatic melanoma remains a mostly incurable disease. Although newly approved targeted therapies are efficacious in a subset of patients, resistance and relapse rapidly ensue. Alternative therapeutic strategies to manipulate epigenetic regulators and disrupt the transcriptional program that maintains tumor cell identity are emerging. Bromodomain and extraterminal domain (BET) proteins are epigenome readers known to exert key roles at the interface between chromatin remodeling and transcriptional regulation. Here, we report that BRD4, a BET family member, is significantly upregulated in primary and metastatic melanoma tissues compared with melanocytes and nevi. Treatment with BET inhibitors impaired melanoma cell proliferation in vitro and tumor growth and metastatic behavior in vivo, effects that were mostly recapitulated by individual silencing of BRD4. RNA sequencing of BET inhibitor-treated cells followed by Gene Ontology analysis showed a striking impact on transcriptional programs controlling cell growth, proliferation, cell-cycle regulation, and differentiation. In particular, we found that, rapidly after BET displacement, key cell-cycle genes (SKP2, ERK1, and c-MYC) were downregulated concomitantly with the accumulation of cyclin-dependent kinase (CDK) inhibitors (p21 and p27), followed by cell-cycle arrest. Importantly, BET inhibitor efficacy was not influenced by BRAF or NRAS mutational status, opening the possibility of using these small-molecule compounds to treat patients for whom no effective targeted therapy exists. Collectively, our study reveals a critical role for BRD4 in melanoma tumor maintenance and renders it a legitimate and novel target for epigenetic therapy directed against the core transcriptional program of melanoma.
Insights
Bromodomain and extraterminal domain (BET) protein BRD4 is upregulated in melanoma. Inhibiting BRD4 disrupts melanoma cell proliferation and tumor growth, offering a new epigenetic therapy target for this incurable cancer.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Metastatic melanoma is largely incurable, with targeted therapies facing resistance and relapse.
- Epigenetic regulators offer novel therapeutic strategies by disrupting tumor cell identity.
- Bromodomain and extraterminal domain (BET) proteins are key regulators of chromatin remodeling and transcription.
Purpose of the Study:
- To investigate the role of BRD4, a BET protein, in melanoma.
- To evaluate the therapeutic potential of BET inhibitors in melanoma treatment.
Main Methods:
- BRD4 expression analysis in melanoma tissues.
- In vitro and in vivo studies using BET inhibitors and BRD4 silencing.
- RNA sequencing and Gene Ontology analysis.
Main Results:
- BRD4 is significantly upregulated in primary and metastatic melanoma.
- BET inhibition reduces melanoma cell proliferation, tumor growth, and metastasis.
- Downregulation of cell-cycle genes (SKP2, ERK1, c-MYC) and upregulation of CDK inhibitors (p21, p27) lead to cell-cycle arrest.
- BET inhibitor efficacy is independent of BRAF or NRAS mutation status.
Conclusions:
- BRD4 plays a critical role in maintaining melanoma tumors.
- BET inhibitors represent a promising novel therapeutic strategy for melanoma, including treatment-resistant cases.
- Targeting the core transcriptional program via BRD4 offers a new avenue for epigenetic therapy in melanoma.
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