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Meng Wu1,2, Jingyi Cui3,4, Huimin Hou1
1Department of Urology, Beijing Hospital, National Center of Gerontology, Institute of Geriatric Medicine, Chinese Academy of Medical Sciences, Beijing, China.
Abstract:
Background: The inactivation of tumor-suppressor p53 plays an important role in second generation anti-androgens (SGAs) drug resistance and neuroendocrine differentiation in castration-resistant prostate cancer (CRPC). The reactivation of p53 by blocking the MDM2-p53 interaction represents an attractive therapeutic remedy in cancers with wild-type or functional p53. Whether MDM2-p53 inhibitor could overcome SGAs drug resistance in CRPC is still needed further research. Here, we investigated the anti-tumor efficacy and mechanisms of a novel MDM2-p53 inhibitor XR-2 in CRPC. Methods: To investigate the functions and mechanisms of XR-2 in prostate cancer, in vitro and in vivo biofunctional assays were performed. Western blot and qRT-PCR assay were performed to detect the protein and mRNA expression levels of indicated genes. CCK8, colony formation, flow cytometry and senescence assays were performed for cell function identifications. RNA-sequencing and bioinformatics analysis were mainly used to identify the influence of XR-2 on prostate cancer cells transcriptome. Subcutaneous 22Rv1 derived xenografts mice model was used to investigate the in vivo anti-tumor activity of XR-2. In addition, the broad-spectrum anti-tumor activities in vivo of XR-2 were evaluated by different xenografts mice models. Results: XR-2 could directly bind to MDM2, potently reactivate the p53 pathway and thus induce cell cycle arrest and apoptosis in wild-type p53 CRPC cell lines. XR-2 also suppresses the AR pathway as p53 regulates AR transcription inhibition and MDM2 participates in AR degradation. As a result, XR-2 efficiently inhibited CRPC cell viability, showed a synergistic effect with enzalutamide and overcame enzalutamide resistance both in vitro and in vivo. Moreover, results illustrated that XR-2 possesses broad-spectrum anti-tumor activities in vivo with favourable safety. Conclusion: MDM2-p53 inhibitor (XR-2) possesses potently prostate cancer progresses inhibition activity both in vitro and in vivo. XR-2 shows a synergistic effect with enzalutamide and overcomes enzalutamide resistance.
Insights
A novel MDM2-p53 inhibitor, XR-2, effectively targets castration-resistant prostate cancer (CRPC) by reactivating p53 and suppressing the AR pathway. XR-2 demonstrates synergistic effects with enzalutamide, overcoming drug resistance in CRPC models.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- p53 tumor suppressor inactivation is crucial in castration-resistant prostate cancer (CRPC) progression and resistance to second-generation anti-androgens (SGAs).
- Reactivating p53 by inhibiting MDM2-p53 interaction is a promising therapeutic strategy for cancers with functional p53.
- The potential of MDM2-p53 inhibitors to overcome SGA resistance in CRPC requires further investigation.
Purpose of the Study:
- To investigate the anti-tumor efficacy and underlying mechanisms of a novel MDM2-p53 inhibitor, XR-2, in CRPC.
- To evaluate XR-2's ability to overcome enzalutamide resistance in CRPC.
- To assess the broad-spectrum anti-tumor activities and safety profile of XR-2 in vivo.
Main Methods:
- In vitro and in vivo biofunctional assays, including Western blot, qRT-PCR, CCK8, colony formation, flow cytometry, and senescence assays.
- RNA-sequencing and bioinformatics analysis to determine XR-2's impact on prostate cancer cell transcriptomes.
- In vivo studies using 22Rv1 xenograft models and other xenograft models to assess anti-tumor activity and safety.
Main Results:
- XR-2 directly binds MDM2, reactivates p53, and induces cell cycle arrest and apoptosis in wild-type p53 CRPC cells.
- XR-2 suppresses the androgen receptor (AR) pathway by inhibiting AR transcription (p53-dependent) and promoting AR degradation (MDM2-dependent).
- XR-2 significantly inhibits CRPC cell viability, exhibits synergy with enzalutamide, and overcomes enzalutamide resistance both in vitro and in vivo, with favorable safety.
Conclusions:
- The MDM2-p53 inhibitor XR-2 demonstrates potent inhibition of prostate cancer progression in vitro and in vivo.
- XR-2 exhibits synergistic effects with enzalutamide and effectively overcomes enzalutamide resistance in CRPC.
- XR-2 presents a promising therapeutic candidate for CRPC, potentially addressing drug resistance mechanisms.
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