Androgen receptor splice variants circumvent AR blockade by microtubule-targeting agents
Guanyi Zhang1,2,3, Xichun Liu2,3, Jianzhuo Li1,2,3
1College of Life Sciences, Jilin University, Changchun, P.R. China.
Abstract:
Docetaxel-based chemotherapy is established as a first-line treatment and standard of care for patients with metastatic castration-resistant prostate cancer. However, half of the patients do not respond to treatment and those do respond eventually become refractory. A better understanding of the resistance mechanisms to taxane chemotherapy is both urgent and clinical significant, as taxanes (docetaxel and cabazitaxel) are being used in various clinical settings. Sustained signaling through the androgen receptor (AR) has been established as a hallmark of CRPC. Recently, splicing variants of AR (AR-Vs) that lack the ligand-binding domain (LBD) have been identified. These variants are constitutively active and drive prostate cancer growth in a castration-resistant manner. In taxane-resistant cell lines, we found the expression of a major variant, AR-V7, was upregulated. Furthermore, ectopic expression of two clinically relevant AR-Vs (AR-V7 and ARV567es), but not the full-length AR (AR-FL), reduced the sensitivities to taxanes in LNCaP cells. Treatment with taxanes inhibited the transcriptional activity of AR-FL, but not those of AR-Vs. This could be explained, at least in part, due to the inability of taxanes to block the nuclear translocation of AR-Vs. Through a series of deletion constructs, the microtubule-binding activity was mapped to the LBD of AR. Finally, taxane-induced cytoplasm sequestration of AR-FL was alleviated when AR-Vs were present. These findings provide evidence that constitutively active AR-Vs maintain the AR signaling axis by evading the inhibitory effects of microtubule-targeting agents, suggesting that these AR-Vs play a role in resistance to taxane chemotherapy.
Insights
Androgen receptor variants (AR-Vs) drive prostate cancer growth and confer resistance to taxane chemotherapy by evading drug effects. Understanding AR-Vs is crucial for improving treatment outcomes in metastatic castration-resistant prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Docetaxel chemotherapy is standard for metastatic castration-resistant prostate cancer (mCRPC), but resistance limits efficacy.
- Sustained androgen receptor (AR) signaling drives mCRPC, with splice variants (AR-Vs) lacking the ligand-binding domain (LBD) being constitutively active.
Purpose of the Study:
- To investigate the role of AR variants in taxane resistance in prostate cancer.
- To elucidate the mechanisms by which AR-Vs contribute to chemotherapy resistance.
Main Methods:
- Analysis of AR-V expression in taxane-resistant cell lines.
- Ectopic expression of AR variants (AR-V7, ARV567es, AR-FL) in LNCaP cells.
- Assessment of taxane sensitivity and AR transcriptional activity.
- Mapping of microtubule-binding activity using deletion constructs.
Main Results:
- AR-V7 expression was upregulated in taxane-resistant cells.
- Clinically relevant AR-Vs, but not full-length AR (AR-FL), reduced taxane sensitivity.
- Taxanes inhibited AR-FL activity but not AR-V activity, potentially due to failed nuclear translocation blockade of AR-Vs.
- Microtubule-binding activity mapped to AR's LBD.
- AR-V presence alleviated taxane-induced cytoplasmic sequestration of AR-FL.
Conclusions:
- Constitutively active AR-Vs promote AR signaling and confer taxane resistance by evading microtubule-targeting agents.
- AR-Vs are key mediators of resistance to taxane chemotherapy in prostate cancer.
- Targeting AR-Vs may offer a strategy to overcome taxane resistance.
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