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Published on: May 2, 2025
BRD4 inhibition leads to MDSC apoptosis and enhances checkpoint blockade therapy
Himanshu Savardekar1,2, Andrew Stiff1,2, Alvin Liu1,2
1The Ohio State University Comprehensive Cancer Center, Columbus, Ohio, USA.
Abstract:
BRD4 is an epigenetic reader protein that regulates oncogenes such as myc in cancer. However, its additional role in shaping immune responses via regulation of inflammatory and myeloid cell responses is not yet fully understood. This work further characterized the multifaceted role of BRD4 in antitumor immunity. Nanostring gene expression analysis of EMT6 tumors treated with a BRD4 inhibitor identified a reduction in myeloid gene expression signatures. Additionally, BRD4 inhibition significantly reduced myeloid-derived suppressor cells (MDSCs) in the spleens and tumors of mice in multiple tumor models and also decreased the release of tumor-derived MDSC growth and chemotactic factors. Pharmacologic inhibition of BRD4 in MDSCs induced apoptosis and modulated expression of apoptosis regulatory proteins. A BRD4 myeloid-specific knockout model suggested that the dominant mechanism of MDSC reduction after BRD4 inhibition was primarily through a direct effect on MDSCs. BRD4 inhibition enhanced anti-PD-L1 therapy in the EMT6, 4T1, and Lewis lung carcinoma tumor models, and the efficacy of the combination treatment was dependent on CD8+ T cells and on BRD4 expression in the myeloid compartment. These results identify BRD4 as a regulator of MDSC survival and provide evidence to further investigate BRD4 inhibitors in combination with immune-based therapies.
Insights
Bromodomain 4 (BRD4) inhibition reduces myeloid-derived suppressor cells (MDSCs) and enhances anti-cancer immunity. This suggests BRD4 inhibitors may improve immunotherapy efficacy in cancer treatment.
Area of Science:
- Oncology
- Immunology
- Epigenetics
Background:
- BRD4 is an epigenetic reader protein regulating oncogenes like MYC in cancer.
- Its role in anti-tumor immunity, particularly in myeloid cell responses, requires further elucidation.
Purpose of the Study:
- To characterize the role of BRD4 in anti-tumor immunity.
- To investigate the impact of BRD4 inhibition on myeloid-derived suppressor cells (MDSCs) and combination therapy efficacy.
Main Methods:
- NanoString gene expression analysis of EMT6 tumors treated with a BRD4 inhibitor.
- Pharmacologic inhibition and myeloid-specific knockout models of BRD4.
- Assessment of combination therapy with anti-PD-L1 in multiple tumor models.
Main Results:
- BRD4 inhibition reduced myeloid gene expression signatures and decreased MDSCs in tumors and spleens.
- Pharmacologic BRD4 inhibition induced apoptosis in MDSCs.
- BRD4 inhibition enhanced anti-PD-L1 therapy efficacy, dependent on CD8+ T cells and myeloid BRD4 expression.
Conclusions:
- BRD4 is a key regulator of MDSC survival.
- BRD4 inhibitors show potential for combination with immune-based therapies to improve anti-tumor immunity.
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