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Published on: June 13, 2019
KDM5C-Mediated Recruitment of BRD4 to Chromatin Regulates Enhancer Activation and BET Inhibitor Sensitivity
Yulong Qiang1, Jiachen Fan1, Chuanshuai Xie2
1Department of Medical Genetics, TaiKang Medical School (School of Basic Medical Sciences), Wuhan University, Wuhan, China.
Abstract:
The BET family member BRD4 is a bromodomain-containing protein that plays a vital role in driving oncogene expression. Given their pivotal role in regulating oncogenic networks in various cancer types, BET inhibitors (BETi) have been developed, but the clinical application has been impeded by dose-limiting toxicity and resistance. Understanding the mechanisms of BRD4 activity and identifying predictive biomarkers could facilitate the successful clinical use of BETis. Herein, we show that KDM5C and BRD4 cooperate to sustain tumor cell growth. Mechanistically, KDM5C interacted with BRD4 and stimulated BRD4 enhancer recruitment. Moreover, binding of the BRD4 C-terminus to KDM5C stimulated the H3K4 demethylase activity of KDM5C. The abundance of both KDM5C-associated BRD4 and H3K4me1/3 determined the transcriptional activation of many oncogenes. Notably, depletion or pharmacologic degradation of KDM5C dramatically reduced BRD4 chromatin enrichment and significantly increased BETi efficacy across multiple cancer types in both tumor cell lines and patient-derived organoid models. Furthermore, targeting KDM5C in combination with BETi suppressed tumor growth in vivo in a xenograft mouse model. Collectively, this work reveals a KDM5C-mediated mechanism by which BRD4 regulates transcription, providing a rationale for incorporating BETi into combination therapies with KDM5C inhibitors to enhance treatment efficacy.
Significance:
BRD4 is recruited to enhancers in a bromodomain-independent manner by binding KDM5C and stimulates KDM5C H3K4 demethylase activity, leading to synergistic effects of BET and KDM5C inhibitor combinations in cancer.
Insights
KDM5C and BRD4 proteins cooperate to drive tumor growth. Targeting KDM5C enhances the efficacy of BET inhibitors (BETi) in multiple cancer types, offering a new combination therapy strategy.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- BRD4 is crucial for oncogene expression in various cancers.
- BET inhibitors (BETi) show promise but face challenges like toxicity and resistance.
- Identifying biomarkers and understanding BRD4 regulation is key for effective BETi therapy.
Purpose of the Study:
- To investigate the cooperative mechanism between KDM5C and BRD4 in cancer.
- To explore KDM5C as a potential target to overcome BETi resistance.
- To evaluate combination therapy of BETi and KDM5C inhibition.
Main Methods:
- Co-immunoprecipitation to study protein interactions.
- Chromatin immunoprecipitation to assess enhancer recruitment.
- Pharmacologic degradation and genetic depletion of KDM5C.
- In vitro cancer cell line and organoid models.
- In vivo xenograft mouse models.
Main Results:
- KDM5C interacts with BRD4, enhancing BRD4's recruitment to enhancers.
- KDM5C binding stimulates BRD4's H3K4 demethylase activity.
- KDM5C depletion reduces BRD4 chromatin enrichment and sensitizes cancer cells to BETi.
- Combination therapy of KDM5C and BETi suppressed tumor growth in vivo.
Conclusions:
- KDM5C plays a critical role in BRD4-mediated oncogene transcription.
- Targeting KDM5C enhances BETi efficacy by disrupting BRD4 function.
- Combination therapy with BETi and KDM5C inhibitors is a promising strategy for cancer treatment.
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