Related Experiment Video
Updated: Dec 10, 2025

Preclinical Assessment of the Bioactivity of the Anticancer Coumarin OT48 by Spheroids, Colony Formation Assays, and Zebrafish Xenografts
Published on: June 26, 2018
A 7-methoxybicoumarin derivative selectively inhibits BRD4 BD2 for anti-melanoma therapy
Guan-Jun Yang1, Wanhe Wang2, Pui-Man Lei1
1Institute of Chinese Medical Sciences, State Key Laboratory of Quality Research in Chinese Medicine, University of Macau, 999078, Macao.
Abstract:
Melanoma is the most dangerous type of skin cancer because of its high invasion and metastasis ability. Bromodomain-containing protein 4 (BRD4), an acetylation-recognizing reader, mediates the proliferation, metastasis, and invasion of melanoma, and is thus a potential therapeutic target. Mounting evidence suggests that inhibition of single bromodomain of BRD4 would improve specificity and reduce cytotoxicity to non-tumor tissues or cells. In this study, a hierarchical virtual screening campaign was performed against BRD4 BD2 from a chemical database including over 90,000 natural/natural-like compounds. Using various biochemical assays, the 7-methoxycoumarin derivative N13 was identified as a potent inhibitor of BRD4 BD2. Compared with the well-known BRD4 inhibitor JQ1, N13 exhibited higher potency against BRD4 BD2 and much higher specificity for BRD4 BD2 over BRD4 BD1. Additionally, N13 inhibited the proliferation of two kinds of BRD4-overexpressing melanoma cell lines. Mechanistically, N13 impaired the protein-protein interaction (PPI) between BRD4 BD2 and its acetylated ligand proteins (Twist1 K73/K76Ac and FOXO3a K242/245Ac), leading to reducing levels of Wnt5A and CDK6 expression, inducing cell senescence of melanoma cancer cells, and ultimately weakening the adhesion, metastasis, and invasion ability of melanoma cancer cells. To our knowledge, N13 is the first 7-methoxybicoumarin-based BRD4 BD2 inhibitor described to date and may function as a new scaffold for developing more specific and potent therapeutic agents against BRD4 BD2. In addition, our research highlights the druggability of BRD4 BD2 as a target for BRD4-overexpressing melanoma and provides a potential mechanism for the anti-melanoma activity of BRD4 BD2 inhibitor.
Insights
Researchers identified N13, a novel 7-methoxycoumarin derivative, as a potent and specific inhibitor of Bromodomain-containing protein 4 (BRD4) BD2. This discovery offers a new therapeutic strategy for melanoma by targeting cancer cell proliferation and metastasis.
Area of Science:
- Oncology
- Molecular Biology
- Medicinal Chemistry
Background:
- Melanoma's high metastasis ability makes it a dangerous cancer.
- Bromodomain-containing protein 4 (BRD4) drives melanoma proliferation and metastasis, presenting a therapeutic target.
- Targeting specific BRD4 bromodomains (BD1, BD2) may enhance specificity and reduce side effects.
Purpose of the Study:
- To identify specific inhibitors of BRD4 BD2 through virtual screening.
- To characterize the anti-melanoma activity and mechanism of novel BRD4 BD2 inhibitors.
Main Methods:
- Hierarchical virtual screening of a natural/natural-like compound database (>90,000 compounds).
- Biochemical assays to identify and validate BRD4 BD2 inhibitors.
- Cell-based assays to assess inhibition of melanoma cell proliferation and metastasis.
Main Results:
- N13, a 7-methoxycoumarin derivative, was identified as a potent BRD4 BD2 inhibitor.
- N13 demonstrated higher potency and specificity for BRD4 BD2 compared to the known inhibitor JQ1.
- N13 inhibited melanoma cell proliferation by disrupting BRD4 BD2 interactions, reducing Wnt5A/CDK6, inducing senescence, and weakening metastasis.
Conclusions:
- N13 is the first described 7-methoxybicoumarin-based BRD4 BD2 inhibitor.
- BRD4 BD2 is a druggable target for melanoma treatment.
- N13 provides a scaffold for developing novel, specific BRD4 inhibitors against melanoma.
Related Concept Videos
Inhibition of Cdk Activity
Targeted Cancer Therapies
There are several types of targeted therapies against...
Drugs that Stabilize Microtubules

