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The Role of Crosstalk between AR3 and E2F1 in Drug Resistance in Prostate Cancer Cells
Jin Xu1, Xi Yang1, Dhanraj Deshmukh1
1Department of Pharmacology, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Background:
Drug resistance is one of the most prevalent causes of death in advanced prostate cancer patients. Combination therapies that target cancer cells via different mechanisms to overcome resistance have gained increased attention in recent years. However, the optimal drug combinations and the underlying mechanisms are yet to be fully explored.
Aim And Methods:
The aim of this study is to investigate drug combinations that inhibit the growth of drug-resistant cells and determine the underlying mechanisms of their actions. In addition, we also established cell lines that are resistant to combination treatments and tested new compounds to overcome the phenomenon of double drug-resistance.
Results:
Our results show that the combination of enzalutamide (ENZ) and docetaxel (DTX) effectively inhibit the growth of prostate cancer cells that are resistant to either drug alone. The downregulation of transcription factor E2F1 plays a crucial role in cellular inhibition in response to the combined therapy. Notably, we found that the androgen receptor (AR) variant AR3 (a.k.a. AR-V7), but not AR full length (AR-FL), positively regulates E2F1 expression in these cells. E2F1 in turn regulates AR3 and forms a positive regulatory feedforward loop. We also established double drug-resistant cell lines that are resistant to ENZ+DTX combination therapy and found that the expression of both AR3 and E2F1 was restored in these cells. Furthermore, we identified that auranofin, an FDA-approved drug for the treatment of rheumatoid arthritis, overcame drug resistance and inhibited the growth of drug-resistant prostate cancer cells both in vitro and in vivo.
Conclusion And Significance:
This proof-of-principle study demonstrates that targeting the E2F1/AR3 feedforward loop via a combination therapy or a multi-targeting drug could circumvent castration resistance in prostate cancer.
Insights
Combination therapy with enzalutamide and docetaxel inhibits drug-resistant prostate cancer by downregulating E2F1. Auranofin overcomes resistance, offering a new treatment strategy for advanced prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Drug resistance is a major cause of mortality in advanced prostate cancer.
- Combination therapies are gaining attention to overcome resistance, but optimal strategies and mechanisms require further investigation.
Purpose of the Study:
- To investigate drug combinations that inhibit drug-resistant prostate cancer cell growth.
- To elucidate the mechanisms underlying combination therapy efficacy.
- To develop strategies to overcome acquired resistance to combination treatments.
Main Methods:
- Established drug-resistant prostate cancer cell lines.
- Tested combination therapy of enzalutamide (ENZ) and docetaxel (DTX).
- Investigated the role of transcription factor E2F1 and androgen receptor variant AR3 (AR-V7).
- Developed double drug-resistant cell lines and tested auranofin.
- Evaluated auranofin efficacy in vitro and in vivo.
Main Results:
- ENZ + DTX combination therapy inhibited resistant prostate cancer cell growth.
- Downregulation of E2F1 was crucial for the anti-cancer effect.
- AR-V7 positively regulated E2F1, forming a feedforward loop with E2F1 regulating AR-V7.
- Restored AR-V7 and E2F1 expression in double drug-resistant cells.
- Auranofin overcame resistance and inhibited tumor growth in resistant prostate cancer models.
Conclusions:
- Targeting the E2F1/AR3 feedforward loop is a viable strategy for overcoming castration resistance in prostate cancer.
- Combination therapy or multi-targeting drugs like auranofin show promise for treating resistant prostate cancer.
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