The bromodomain and extra-terminal domain (BET) protein BRD4 is emerging as a promising anticancer therapeutic target. However, resistance to BET inhibitors often occurs, and it has been linked to aberrant degradation of BRD4 protein in cancer. Here, we demonstrate that the deubiquitinase DUB3 binds to BRD4 and promotes its deubiquitination and stabilization. Expression of DUB3 is transcriptionally repressed by the NCOR2-HDAC10 complex. The NCOR2 gene is frequently deleted in castration-resistant prostate cancer patient specimens, and loss of NCOR2 induces elevation of DUB3 and BRD4 proteins in cancer cells. DUB3-proficient prostate cancer cells are resistant to the BET inhibitor JQ1 in vitro and in mice, but this effect is diminished by DUB3 inhibitory agents such as CDK4/6 inhibitor in a RB-independent manner. Our findings identify a previously unrecognized mechanism causing BRD4 upregulation and drug resistance, suggesting that DUB3 is a viable therapeutic target to overcome BET inhibitor resistance in cancer.
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http://dx.doi.org/10.1016/j.molcel.2018.06.036 | DOI Listing |
J Med Chem
January 2025
Department of Medicinal Chemistry, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 555 Zuchongzhi Road, Shanghai 201203, China.
Simultaneous inhibition of the bromodomain and extra-terminal domain and Aurora kinases is a promising anticancer therapeutic strategy. Based on our previous study on BET-kinase dual inhibitors, we employed the molecular docking approach to design novel dual BET-Aurora kinase A inhibitors. Through several rounds of optimization and with the guidance of the solved cocrystal structure of BRD4 bound to inhibitor , we finally obtained a series of highly potent dual BET-Aurora kinase A inhibitors.
View Article and Find Full Text PDFChem Biodivers
January 2025
Shaanxi University of Science and Technology, Chllege of Chemistry and Chemical Engineering, Weiyang Daxue Yuanqv, 710021, Xi'an, CHINA.
Bromodomain and extra terminal domain (BET) proteins play important roles in biological processes such as cell proliferation, differentiation, and signaling, and are involved in the occurrence and development of many diseases, including cancer and inflammatory diseases. Selective inhibitors targeting the first bromodomain (BD1) or the second bromodomain (BD2) have triggered a new wave of research to produce more specific and safer drugs. In this study, 37 novel selective BET BD2 inhibitors with anti-inflammatory activity are selected to construct robust Topomer CoMFA (q2=0.
View Article and Find Full Text PDFDrug Dev Res
February 2025
Department of Gynecology and Obstetrics, Affiliated Hospital of Nantong University, Nantong, China.
Ovarian cancer is the seventh most common lethal tumor among women in the world. FOXM1 is a transcription factor implicated in the initiation and progression of ovarian cancer by regulating key oncogenic genes. The role of regulatory regions in regulating the expression of FOXM1 in ovarian cancer is not completely clarified.
View Article and Find Full Text PDFEur J Med Chem
January 2025
Jiangsu Key Laboratory of Drug Design & Optimization, Department of Medicinal Chemistry, China Pharmaceutical University, Nanjing, 211198, PR China. Electronic address:
The bromodomain-containing protein 4 (BRD4) is an epigenetic regulatory 'reader' belonging to the bromodomain and extra-terminal domain (BET) family. Several studies have demonstrated that the high expression of BRD4 is closely related to the occurrence and development of various cancers, so BRD4 has become a promising target for cancer treatment. However, there are no drugs targeting BRD4 available on the market, the development of novel BRD4 inhibitors is of great significance.
View Article and Find Full Text PDFAdv Sci (Weinh)
January 2025
Univ. Grenoble Alpes, Inserm, CNRS, Institute for Advanced Biosciences (IAB), Grenoble, 38000, France.
The fungal Bromodomain and Extra-Terminal (BET) protein Bdf1 is a potential antifungal target against invasive fungal infections. However, the need to selectively inhibit both Bdf1 bromodomains (BDs) over human orthologs and the lack of molecular tools to assess on-target antifungal efficacy hamper efforts to develop Bdf1 BD inhibitors as antifungal therapeutics. This study reports a phenyltriazine compound that inhibits both Bdf1 BDs from the human fungal pathogen Candida glabrata with selectivity over the orthologous BDs from the human BET protein Brd4.
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