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Degradation of BRD4 - a promising treatment approach not only for hematologic but also for solid cancer
Karin Bauer1,2,3, Anna S Berghoff4, Matthias Preusser2,4
1Ludwig Boltzmann Institute for Hematology and Oncology, Medical University of Vienna Austria.
Abstract:
Bromodomain (BRD) and extra-terminal (BET) proteins are epigenetic readers that regulate gene expression and promote cancer evolution. Pharmacological inactivation of BRD4 has recently been introduced as a promising anti-neoplastic approach that targets MYC oncogene expression. However, resistance against BRD4-targeting drugs has been described. We compared the efficacy of the small-molecule-type BET BRD inhibitor JQ1 with the recently developed BET protein degraders dBET1 and dBET6 in colon, breast, melanoma, ovarian, lung and prostate cancer cell lines. As determined by qPCR, all BRD4 targeting drugs dose-dependently decreased MYC expression, with dBET6 introducing the strongest downregulation of MYC. This correlated with the anti-proliferative activity of these drugs, which was at least one order of magnitude higher for dBET6 (IC50 0.001-0.5 µM) than for dBET1 or JQ1 (IC50 0.5-5 µM). Interestingly, when combined with commonly used cytotoxic therapeutics, dBET6 was found to promote anti-neoplastic effects and to counteract chemoresistance in most cancer cell lines. Moreover, JQ1 and both BET degraders strongly downregulated baseline and interferon-gamma induced expression of the immune checkpoint molecule PD-L1 in all cancer cell lines. Together, our data suggest that dBET6 outperforms first-generation BRD4 targeting drugs like dBET1 and JQ1, and decreases chemoresistance and immune resistance of cancer.
Insights
BET protein degraders, particularly dBET6, show superior efficacy in reducing MYC expression and inhibiting cancer cell proliferation compared to JQ1. These novel drugs also overcome chemoresistance and reduce immune resistance by downregulating PD-L1.
Area of Science:
- Epigenetics
- Cancer Biology
- Pharmacology
Background:
- Bromodomain and extra-terminal (BET) proteins are epigenetic readers crucial for gene regulation and cancer progression.
- Targeting BRD4, a BET protein, is a promising anti-cancer strategy, but drug resistance is a challenge.
Purpose of the Study:
- To compare the efficacy of BET inhibitors (JQ1) and degraders (dBET1, dBET6) in various cancer cell lines.
- To evaluate their impact on MYC expression, cell proliferation, chemoresistance, and immune checkpoint PD-L1.
Main Methods:
- Quantitative PCR (qPCR) to measure MYC and PD-L1 expression.
- Assessing anti-proliferative activity (IC50 values).
- Evaluating drug combinations with cytotoxic therapeutics.
Main Results:
- All tested drugs dose-dependently reduced MYC expression; dBET6 showed the strongest downregulation.
- dBET6 exhibited significantly higher anti-proliferative activity (IC50 0.001-0.5 µM) than dBET1 or JQ1 (IC50 0.5-5 µM).
- dBET6 demonstrated anti-neoplastic effects and counteracted chemoresistance when combined with cytotoxic drugs.
- JQ1, dBET1, and dBET6 downregulated both baseline and interferon-gamma-induced PD-L1 expression.
Conclusions:
- dBET6 is more effective than first-generation BRD4 inhibitors like JQ1 and dBET1.
- dBET6 reduces both chemoresistance and immune resistance in cancer cells.
- BET degraders represent a promising therapeutic strategy for overcoming cancer drug resistance.
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