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Androgen blocks apoptosis of hormone-dependent prostate cancer cells
K Kimura1, M Markowski, C Bowen
1Department of Medicine, Lombardi Cancer Center, Georgetown University, Washington, DC 20007-2197, USA.
Abstract:
Androgen plays a critical role in the promotion and growth of prostate cancer. Androgen ablation has an expanding role in prostate cancer treatment and is now used to improve the efficacy of radiation therapy in addition to its role in treatment of metastatic disease. Here we show that androgen interferes with induction of prostate cancer cell death induced by a variety of stimuli. The effect of androgen on cell death occurs predominantly by interference with caspase activation and the inhibition of caspase cleavage in both the extrinsic and intrinsic cell death pathways. Androgen inhibited apoptosis induced by both tumor necrosis factor alpha (TNF-alpha) and by Fas activation with or without concomitant irradiation. An antiapoptotic effect was seen in the presence of R1881, dihydrotestosterone, and also 17beta-estradiol within 24 h of death induction. Sustained inhibition of apoptosis at 72 h was seen only with R1881, dihydrotestosterone, cyproterone acetate, and hydroxyflutamide. Androgen treatment inhibited activation of caspases-8, -7, and -9 by TNF-alpha +/- irradiation. Androgen attenuated BAX expression and blocked appearance of the proapoptotic p18 fragment of BAX. Androgen also abrogated BID cleavage induced by TNF-alpha + irradiation that contributed to a decrease in cytochrome c egress from mitochondria induced by TNF-alpha +/- irradiation. There was also decreased mitochondrial depolarization in response to TNF-alpha + irradiation. Production of the proapoptotic lipid metabolite ceramide was not affected by androgen, but androgen acted downstream from ceramide generation because R1881 blocked cell-death induction by bacterial sphingomyelinase. Inhibition of phosphoinositol-3-kinase activity by wortmannin induced apoptosis that was also blocked by androgen, but there was no effect on protein levels or phosphorylation of AKT, indicating that R1881 did not interact with survival signaling of phosphoinositol-3-kinase. Lastly, androgen inhibited activation of nuclear factor-kappaB during death induction, but the effect of androgen on cell death was not mediated by interference with the nuclear factor-kappaB pathway. The data suggest that androgen induced blockade of caspase activation in both intrinsic and extrinsic cell death pathways and thereby was able to protect prostate cancer cells from apoptosis induced by diverse stimuli.
Insights
Androgen protects prostate cancer cells from death by blocking caspase activation in both intrinsic and extrinsic pathways. This finding reveals a key mechanism by which androgens promote cancer cell survival.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Androgen is crucial for prostate cancer growth and survival.
- Androgen ablation is a key therapeutic strategy for prostate cancer, including metastatic disease and radiation therapy enhancement.
- Androgen's role in regulating cancer cell death pathways is not fully understood.
Purpose of the Study:
- To investigate the effect of androgens on the induction of prostate cancer cell death.
- To elucidate the molecular mechanisms by which androgens interfere with apoptosis.
- To determine if androgen's anti-apoptotic effect involves specific cell death pathways.
Main Methods:
- Prostate cancer cells were treated with various death-inducing stimuli (e.g., TNF-alpha, Fas activation) in the presence or absence of androgens (R1881, dihydrotestosterone, 17beta-estradiol).
- Caspase activation, BAX expression and cleavage, BID cleavage, mitochondrial membrane potential, and NF-kappaB activation were assessed.
- The role of phosphoinositol-3-kinase (PI3K) signaling was evaluated using wortmannin and AKT phosphorylation analysis.
Main Results:
- Androgen significantly inhibited apoptosis induced by multiple stimuli, including TNF-alpha and Fas activation, with or without irradiation.
- Androgen blocked caspase activation (caspases-8, -7, -9) and attenuated BAX expression and cleavage, thereby preventing cytochrome c release and mitochondrial depolarization.
- The anti-apoptotic effect of androgen was downstream of ceramide generation and did not involve the PI3K/AKT or NF-kappaB pathways.
Conclusions:
- Androgen actively protects prostate cancer cells from apoptosis by inhibiting caspase activation in both intrinsic and extrinsic cell death pathways.
- This blockade of apoptosis contributes to androgen's role in promoting prostate cancer progression.
- Targeting androgen-mediated inhibition of apoptosis could represent a novel therapeutic strategy for prostate cancer.
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