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The aryl hydrocarbon receptor is constitutively active in advanced prostate cancer cells
Oliver Richmond1, Maryam Ghotbaddini1, Cidney Allen2
1Clark Atlanta University Center for Cancer Research and Therapeutic Development (CCRTD), Atlanta, Georgia, United States of America.
Background:
Distant prostate cancers are commonly hormone refractory and exhibit increased growth no longer inhibited by androgen deprivation therapy. Understanding all molecular mechanisms contributing to uncontrolled growth is important to obtain effective treatment strategies for hormone refractory prostate cancers (HRPC). The aryl hydrocarbon receptor (AhR) affects a number of biological processes including cell growth and differentiation. Several studies have revealed that exogenous AhR ligands inhibit cellular proliferation but recent evidence suggests AhR may possess intrinsic functions that promote cellular proliferation in the absence of exogenous ligands.
Methods/Results:
qRT-PCR and western blot analysis was used to determine AhR mRNA and protein expression in hormone sensitive LNCaP cells as well as hormone refractory DU145, PC3 and PC3M prostate cancer cell lines. LNCaP cells express AhR mRNA and protein at a much lower level than the hormone refractory cell models. Cellular fractionation and immunocytochemistry revealed nuclear localization of AhR in the established hormone refractory cell lines while LNCaP cells are devoid of nuclear AhR protein. qRT-PCR analysis used to assess basal CYP1B1 levels and a xenobiotic responsive element binding assay confirmed ligand independent transcriptional activity of AhR in DU145, PC3 and PC3M cells. Basal CYP1B1 levels were decreased by treatment with specific AhR inhibitor, CH223191. An in vitro growth assay revealed that CH223191 inhibited growth of DU145, PC3 and PC3M cells in an androgen depleted environment. Immunohistochemical staining of prostate cancer tissues revealed increased nuclear localization of AhR in grade 2 and grade 3 cancers compared to the well differentiated grade 1 cancers.
Conclusions:
Together, these results show that AhR is constitutively active in advanced prostate cancer cell lines that model hormone refractory prostate cancer. Chemical ablation of AhR signaling can reduce the growth of advanced prostate cancer cells, an effect not achieved with androgen receptor inhibitors or growth in androgen depleted media.
Insights
Aryl hydrocarbon receptor (AhR) is constitutively active in hormone-refractory prostate cancer (HRPC), promoting tumor growth. Inhibiting AhR signaling effectively reduces HRPC cell proliferation, offering a new therapeutic target.
Area of Science:
- Molecular biology
- Cancer research
- Cellular signaling
Background:
- Hormone-refractory prostate cancer (HRPC) exhibits uncontrolled growth, often driven by mechanisms beyond androgen deprivation.
- The aryl hydrocarbon receptor (AhR) plays a role in cell growth, with potential roles in HRPC progression.
- While exogenous AhR ligands can inhibit proliferation, intrinsic AhR functions may promote growth in advanced prostate cancer.
Purpose of the Study:
- To investigate the role and activity of the aryl hydrocarbon receptor (AhR) in hormone-refractory prostate cancer (HRPC).
- To determine if AhR signaling contributes to the proliferation of HRPC cells.
- To evaluate the therapeutic potential of targeting AhR in HRPC.
Main Methods:
- Quantitative reverse transcription PCR (qRT-PCR) and Western blot to assess AhR mRNA and protein expression.
- Cellular fractionation and immunocytochemistry to determine AhR localization.
- CYP1B1 expression analysis and xenobiotic responsive element binding assays to confirm AhR transcriptional activity.
- In vitro growth assays and immunohistochemical staining of prostate cancer tissues.
Main Results:
- Hormone-refractory prostate cancer cell lines (DU145, PC3, PC3M) express significantly higher levels of AhR than hormone-sensitive LNCaP cells.
- AhR is localized in the nucleus of HRPC cells, indicating active signaling.
- AhR exhibits ligand-independent transcriptional activity, as evidenced by basal CYP1B1 levels.
- Inhibition of AhR signaling with CH223191 reduced HRPC cell growth in androgen-depleted conditions.
- Increased nuclear AhR localization correlates with higher tumor grades in prostate cancer tissues.
Conclusions:
- Constitutively active AhR signaling drives the growth of hormone-refractory prostate cancer cells.
- Targeting AhR signaling with chemical inhibitors offers a promising therapeutic strategy for HRPC.
- AhR inhibition demonstrates efficacy independent of androgen receptor status or androgen depletion.
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