Targeting CBX3 with a Dual BET/PLK1 Inhibitor Enhances the Antitumor Efficacy of CDK4/6 Inhibitors in Prostate Cancer
Huaiyuan Liang1,2, Chunguang Yang3, Ruijiang Zeng1,2
1Department of Urology, The Second Xiangya Hospital, Central South University, Changsha, Hunan, 410011, China.
Abstract:
The development of castration-resistant prostate cancer (CRPC) is a significant factor that reduces life expectancy among patients with prostate cancer. Previously, it is reported that CDK4/6 inhibitors can overcome the resistance of CRPC to BET inhibitors by destabilizing BRD4, suggesting that the combination of CDK4/6 inhibitors and BET inhibitors is a promising approach for treating CRPC. In this study, candidates that affect the combined antitumor effect of CDK4/6 inhibitors and BET inhibitors on CRPC is aimed to examine. The data demonstrates that CBX3 is abnormally upregulated in CDK4/6 inhibitors-resistant cells. CBX3 is almost positively correlated with the cell cycle in multiple malignancies and is downregulated by BET inhibitors. Mechanistically, it is showed that CBX3 is transcriptionally upregulated by BRD4 in CRPC cells. Moreover, it is demonstrated that CBX3 modulated the sensitivity of CRPC to CDK4/6 inhibitors by binding with RB1 to release E2F1. Furthermore, it is revealed that PLK1 phosphorylated CBX3 to enhance the interaction between RB1 and CBX3, and desensitize CRPC cells to CDK4/6 inhibitors. Given that BRD4 regulates CBX3 expression and PLK1 affects the binding between RB1 and CBX3, it is proposed that a dual BRD4/PLK1 inhibitor can increase the sensitivity of CRPC cells to CDK4/6 inhibitors partially through CBX3.
Insights
Combining CDK4/6 and BET inhibitors shows promise for castration-resistant prostate cancer (CRPC). This study identifies CBX3 as a key regulator, revealing that inhibiting BRD4 and PLK1 may enhance treatment efficacy in CRPC.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Castration-resistant prostate cancer (CRPC) significantly reduces patient survival.
- CDK4/6 inhibitors can overcome resistance to BET inhibitors by targeting BRD4.
- Combination therapy of CDK4/6 and BET inhibitors is a potential strategy for CRPC treatment.
Purpose of the Study:
- To investigate factors influencing the combined antitumor effects of CDK4/6 and BET inhibitors in CRPC.
- To elucidate the role of CBX3 in CDK4/6 inhibitor resistance in CRPC.
Main Methods:
- Analysis of gene expression in CDK4/6 inhibitor-resistant CRPC cells.
- Investigation of the regulatory relationship between BRD4, CBX3, RB1, and E2F1.
- Assessment of the impact of PLK1 phosphorylation on CBX3-RB1 interaction.
Main Results:
- CBX3 is upregulated in CDK4/6 inhibitor-resistant cells and positively correlated with the cell cycle.
- BRD4 transcriptionally upregulates CBX3 in CRPC cells.
- CBX3 modulates CRPC sensitivity to CDK4/6 inhibitors by interacting with RB1, releasing E2F1.
- PLK1 phosphorylation of CBX3 enhances RB1 binding, leading to CRPC desensitization to CDK4/6 inhibitors.
Conclusions:
- CBX3 plays a critical role in CRPC resistance to CDK4/6 inhibitors.
- Targeting both BRD4 and PLK1 may represent a novel therapeutic strategy to enhance CRPC sensitivity to CDK4/6 inhibitors by modulating CBX3 activity.
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