ARV-825 Showed Antitumor Activity against BRD4-NUT Fusion Protein by Targeting the BRD4
Liu Yang1, Yue Jing1, Xia Xia2
1Applied Biology Laboratory, College of Pharmaceutical and Biological Engineering, Shenyang University of Chemical Technology, Shenyang 110142, China.
Objective:
The bromodomain-containing 4 (BRD4) is a member of the bromodomain and extra terminal domain (BET) family, which is an important epigenetic reader. It is currently a promising oncology target. In some tumors, BET bromodomain inhibitors have demonstrated promising results. Proteolysis-targeting methods (PROTAC), which rapidly and effectively degrade BRD4, have displayed considerable potential in the treatment of tumors in recent years. The purpose of this study is to examine the potential impact of BRD4 PROTAC compounds ARV-825 on oncogene BRD4-NUT fused protein in NUT carcinoma.
Methods:
The effectiveness of ARV-825 was evaluated at the cellular level using the cell counting kit 8 test, wound healing, cell transfection, western blotting analysis, and RNA sequencing. The effectiveness of ARV-825 was also examined in vivo using a xenograft model.
Results:
The BRD4-NUT fusion gene was overexpressed in 3T3 cells, and the pathogenic fusion gene was simulated. The results showed that the overexpression of BRD4-NUT could promote the proliferation and migration of 3T3 cells, but the expression of BRD4 protein was degraded after the addition of the novel cereblon-based PROTAC compound ARV-825 against BRD4, resulting in inhibition of BRD4-NUT 3T3 cell proliferation and migration. Further RNA-seq analysis showed that overexpression of BRD4-NUT was accompanied by increased expression of gene (e.g., Myc, E2F, TRAFs, Wnt, Gadd45g, and Sox6) with significantly enriched pathway (e.g., small cell lung cancer, NF-kappa B signaling pathway, and breast cancer), promoted cell cycle from G 1 phase to S phase, and increased cell proliferation and migration, activated the antiapoptosisi signal, led to abnormal cell growth, and ultimately led to tumorigenesis. The addition of ARV-825 effectively rescued this process and effectively inhibited cell vitality, proliferation, and migration. In vivo studies demonstrated that treatment with ARV-825 greatly suppressed tumor growth without causing harmful side effects and downregulated the BRD4-NUT expression level.
Conclusion:
Through the induction of BRD4 protein degradation, ARV-825 can successfully limit BRD4-NUT 3T3 cell proliferation in vitro and in vivo. These findings suggested that the BRD4 inhibitor ARV-825 would be an effective therapeutic strategy for treating NUT carcinoma that with the genetic feature of BRD4-NUT fusion event.
Insights
ARV-825, a novel proteolysis-targeting chimera (PROTAC), effectively degrades BRD4-NUT fusion protein. This targeted degradation inhibits cancer cell proliferation and migration, showing promise for NUT carcinoma treatment.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Bromodomain-containing 4 (BRD4) is a key epigenetic reader and a promising oncology target.
- Proteolysis-targeting methods (PROTAC) offer a novel approach to degrade target proteins like BRD4.
- NUT carcinoma is a rare cancer often driven by BRD4-NUT fusion proteins.
Purpose of the Study:
- To investigate the efficacy of the BRD4 PROTAC compound ARV-825 against the oncogenic BRD4-NUT fusion protein in NUT carcinoma.
- To evaluate the impact of ARV-825 on cancer cell proliferation, migration, and tumor growth.
Main Methods:
- In vitro studies utilized cell counting kit 8, wound healing assays, cell transfection, western blotting, and RNA sequencing.
- In vivo efficacy was assessed using a xenograft mouse model.
Main Results:
- ARV-825 effectively degraded BRD4-NUT protein in simulated NUT carcinoma cells (3T3).
- ARV-825 inhibited proliferation and migration of BRD4-NUT-overexpressing cells.
- RNA-seq revealed ARV-825 reversed oncogenic gene expression and pathway activation, suppressed cell cycle progression, and reduced tumor growth in vivo without significant side effects.
Conclusions:
- ARV-825 demonstrates potent anti-cancer activity by inducing BRD4 protein degradation.
- ARV-825 represents a promising therapeutic strategy for NUT carcinoma characterized by BRD4-NUT fusion events.
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