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Updated: Jun 29, 2025

Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
BRD4 inhibitors broadly promote erastin-induced ferroptosis in different cell lines by targeting ROS and FSP1
Chenyang Fan1, Xiaohong Guo1, Jie Zhang1
1Department of Pathogenic Biology, School of Medicine, Nantong University, Nantong, China.
Abstract:
Ferroptosis, an iron-dependent form of programmed cell death, is a promising strategy for cancer treatment. Bromodomain-containing protein 4 (BRD4) is an epigenetic reader and a promising target for cancer therapeutics. However, the role of BRD4 in ferroptosis is controversial and the value of the interaction between BRD4 inhibitors and ferroptosis inducers remains to be explored. Here, we found that BRD4 inhibition greatly enhanced erastin-induced ferroptosis in different types of cells, including HEK293T, HeLa, HepG2, RKO, and PC3 cell lines. Knocking down BRD4 in HEK293T and HeLa cells also promoted erastin-induced cell death. BRD4 inhibition by JQ-1 and I-BET-762 or BRD4 knockdown resulted in substantial accumulation of reactive oxygen species (ROS) in both HEK293T and HeLa cells. The effect of BRD4 inhibition on ferroptosis-associated genes varied in different cells. After using BRD4 inhibitors, the expression of FTH1, Nrf2, and GPX4 increased in HEK293T cells, while the levels of VDAC2, VDAC3, and FSP1 decreased. In HeLa cells, the expression of FTH1, VDAC2, VDAC3, Nrf2, GPX4, and FSP1 was reduced upon treatment with JQ-1 and I-BET-762. Consistently, the level of FSP1 was greatly reduced in HEK293T and HeLa cells with stable BRD4 knockdown compared to control cells. Furthermore, ChIP-sequencing data showed that BRD4 bound to the promoter of FSP1, but the BRD4 binding was greatly reduced upon JQ-1 treatment. Our results suggest that ROS accumulation and FSP1 downregulation are common mechanisms underlying increased ferroptosis with BRD4 inhibitors. Thus, BRD4 inhibitors might be more effective in combination with ferroptosis inducers, especially in FSP1-dependent cancer cells.
Insights
Bromodomain-containing protein 4 (BRD4) inhibition enhances ferroptosis, a cell death pathway crucial for cancer therapy. This study reveals BRD4 inhibitors increase reactive oxygen species and downregulate FSP1, suggesting their potential in combination cancer treatments.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Death Mechanisms
Background:
- Ferroptosis, an iron-dependent cell death, is a promising cancer treatment strategy.
- Bromodomain-containing protein 4 (BRD4) is a key epigenetic regulator and cancer therapeutic target.
- The interplay between BRD4 inhibition and ferroptosis in cancer remains underexplored.
Purpose of the Study:
- To investigate the role of BRD4 in ferroptosis.
- To explore the combined efficacy of BRD4 inhibitors and ferroptosis inducers.
- To elucidate the molecular mechanisms underlying BRD4 inhibition-induced ferroptosis.
Main Methods:
- Utilized various cancer cell lines (HEK293T, HeLa, HepG2, RKO, PC3).
- Employed BRD4 inhibitors (JQ-1, I-BET-762) and BRD4 knockdown.
- Assessed cell death, reactive oxygen species (ROS) levels, and ferroptosis-associated gene expression.
- Performed Chromatin immunoprecipitation sequencing (ChIP-seq) to analyze BRD4 binding.
Main Results:
- BRD4 inhibition significantly enhanced erastin-induced ferroptosis across multiple cell lines.
- BRD4 inhibition led to increased ROS accumulation and FSP1 downregulation.
- BRD4 directly binds to the FSP1 promoter, and this binding is reduced by JQ-1 treatment.
Conclusions:
- BRD4 inhibition potentiates ferroptosis through ROS accumulation and FSP1 downregulation.
- BRD4 inhibitors may be effective when combined with ferroptosis inducers, particularly in FSP1-dependent cancers.
- This study highlights a novel therapeutic strategy for cancer treatment by targeting BRD4 in conjunction with ferroptosis.
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