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Selenium compounds inhibit I kappa B kinase (IKK) and nuclear factor-kappa B (NF-kappa B) in prostate cancer cells
Alexander V Gasparian1, Ya Juan Yao, Junxuan Lü
1AMC Cancer Research Center, 1600 Pierce Street, Denver, CO 80214, USA.
Abstract:
Selenium compounds are potential chemopreventive agents for prostate cancer. There are several proposed mechanisms for their anticancer effect, including enhanced apoptosis of transformed cells. Because the transcription factor nuclear factor-kappa B (NF-kappa B) is often constitutively activated in tumors and is a key antiapoptotic factor in mammalian cells, we tested whether selenium inhibited NF-kappa B activity in prostate cancer cells. In our work, we used sodium selenite and a novel synthetic compound, methylseleninic acid (MSeA), that served as a precursor of the putative active monomethyl metabolite methylselenol. We found that both selenium forms inhibited cell growth and induced apoptosis in DU145 and JCA1 prostate carcinoma cells. Sodium selenite and MeSeA, at the concentrations that induced apoptosis, inhibited NF-kappa B DNA binding induced by tumor necrosis factor-alpha and lipopolysaccharide in DU145 and JCA1 prostate cells. Both compounds also inhibited kappa B. Luciferase reporter activity in prostate cells. A key to NF-kappa B regulation is the inhibitory kappa B (I kappa B) proteins that in response to diverse stimuli are rapidly phosphorylated by I kappa B kinase complex, ubiquitinated, and undergo degradation, releasing NF-kappa B factor. We showed that sodium selenite and MSeA inhibited I kappa B kinase activation and I kappa B-alpha phosphorylation and degradation induced by TNF-alpha and lipopolysaccharide in prostate cells. NF-kappa B blockage by I kappa B-alpha d.n. mutant resulted in the sensitization of prostate carcinoma cells to apoptosis induced by selenium compounds. These results suggest that selenium may target the NF-kappa B activation pathway to exert, at least in part, its cancer chemopreventive effect in prostate.
Insights
Selenium compounds inhibit prostate cancer cell growth by blocking the nuclear factor-kappa B (NF-kappa B) pathway. This mechanism enhances apoptosis, suggesting selenium
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Prostate cancer often exhibits constitutive activation of nuclear factor-kappa B (NF-kappa B), a key antiapoptotic factor.
- Selenium compounds are investigated for chemopreventive properties against prostate cancer, with enhanced apoptosis as a proposed mechanism.
Purpose of the Study:
- To investigate the effect of selenium compounds on NF-kappa B activity in prostate cancer cells.
- To determine if selenium's chemopreventive effects are mediated through the NF-kappa B pathway.
Main Methods:
- Utilized sodium selenite and methylseleninic acid (MSeA) in DU145 and JCA1 prostate carcinoma cell lines.
- Assessed cell growth inhibition, apoptosis induction, NF-kappa B DNA binding, and I kappa B kinase activation.
- Measured kappa B-luciferase reporter activity and I kappa B-alpha phosphorylation/degradation.
Main Results:
- Both sodium selenite and MSeA inhibited prostate cancer cell growth and induced apoptosis.
- Selenium compounds suppressed NF-kappa B DNA binding and kappa B-luciferase activity.
- Inhibited I kappa B kinase activation, I kappa B-alpha phosphorylation, and degradation.
Conclusions:
- Selenium compounds, including sodium selenite and MSeA, inhibit NF-kappa B activation in prostate cancer cells.
- Targeting the NF-kappa B pathway is a significant mechanism for selenium's chemopreventive effects in prostate cancer.
- Blocking NF-kappa B sensitizes prostate cancer cells to selenium-induced apoptosis.
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