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Published on: April 27, 2018
Potent Stimulation of the Androgen Receptor Instigates a Viral Mimicry Response in Prostate Cancer
Mohammadreza Alizadeh-Ghodsi1,2, Katie L Owen3,4, Scott L Townley1,5,6
1Dame Roma Mitchell Cancer Research Laboratories, Adelaide Medical School, The University of Adelaide, Adelaide, SA, Australia.
Abstract:
Inhibiting the androgen receptor (AR), a ligand-activated transcription factor, with androgen deprivation therapy is a standard-of-care treatment for metastatic prostate cancer. Paradoxically, activation of AR can also inhibit the growth of prostate cancer in some patients and experimental systems, but the mechanisms underlying this phenomenon are poorly understood. This study exploited a potent synthetic androgen, methyltestosterone (MeT), to investigate AR agonist-induced growth inhibition. MeT strongly inhibited growth of prostate cancer cells expressing AR, but not AR-negative models. Genes and pathways regulated by MeT were highly analogous to those regulated by DHT, although MeT induced a quantitatively greater androgenic response in prostate cancer cells. MeT potently downregulated DNA methyltransferases, leading to global DNA hypomethylation. These epigenomic changes were associated with dysregulation of transposable element expression, including upregulation of endogenous retrovirus (ERV) transcripts after sustained MeT treatment. Increased ERV expression led to accumulation of double-stranded RNA and a "viral mimicry" response characterized by activation of IFN signaling, upregulation of MHC class I molecules, and enhanced recognition of murine prostate cancer cells by CD8+ T cells. Positive associations between AR activity and ERVs/antiviral pathways were evident in patient transcriptomic data, supporting the clinical relevance of our findings. Collectively, our study reveals that the potent androgen MeT can increase the immunogenicity of prostate cancer cells via a viral mimicry response, a finding that has potential implications for the development of strategies to sensitize this cancer type to immunotherapies.
Significance:
Our study demonstrates that potent androgen stimulation of prostate cancer cells can elicit a viral mimicry response, resulting in enhanced IFN signaling. This finding may have implications for the development of strategies to sensitize prostate cancer to immunotherapies.
Insights
Potent androgen stimulation, using methyltestosterone (MeT), inhibits prostate cancer growth by downregulating DNA methyltransferases and upregulating endogenous retroviruses (ERVs). This triggers a viral mimicry response, enhancing cancer cell immunogenicity and T cell recognition.
Area of Science:
- Oncology
- Immunology
- Epigenetics
Background:
- Androgen receptor (AR) signaling is crucial in prostate cancer, with inhibition being standard treatment.
- Paradoxically, AR activation can inhibit prostate cancer growth, but mechanisms remain unclear.
- Understanding AR agonist effects is vital for novel therapeutic strategies.
Purpose of the Study:
- To investigate the mechanisms of AR agonist-induced prostate cancer growth inhibition.
- To explore the role of methyltestosterone (MeT) as a potent AR agonist.
- To determine the impact of MeT on epigenomic modifications and immune responses in prostate cancer.
Main Methods:
- Utilized methyltestosterone (MeT) to treat AR-positive and AR-negative prostate cancer cells.
- Analyzed gene and pathway regulation in response to MeT treatment.
- Assessed DNA methylation, transposable element expression, and interferon (IFN) signaling.
- Evaluated CD8+ T cell recognition of MeT-treated cancer cells.
- Correlated findings with patient transcriptomic data.
Main Results:
- MeT potently inhibited AR-positive prostate cancer cell growth.
- MeT downregulated DNA methyltransferases, leading to global DNA hypomethylation.
- Sustained MeT treatment upregulated endogenous retroviruses (ERVs), inducing a viral mimicry response.
- This response activated IFN signaling and enhanced CD8+ T cell recognition.
- AR activity positively associated with ERVs and antiviral pathways in patient data.
Conclusions:
- Potent androgen stimulation via MeT can inhibit prostate cancer growth through epigenomic reprogramming.
- MeT induces a viral mimicry response, increasing cancer cell immunogenicity.
- These findings suggest potential therapeutic strategies combining androgens with immunotherapies for prostate cancer.
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