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Updated: Jan 28, 2026

miRNA Expression Analyses in Prostate Cancer Clinical Tissues
Published on: September 8, 2015
Hsp-27 and NF-κB pathway is associated with AR/AR-V7 expression in prostate cancer cells
Ilker Kiliccioglu1, Ece Konac1, Asiye Ugras Dikmen2
1Department of Medical Biology and Genetics, Faculty of Medicine, Gazi University, Besevler, 06510 Ankara, Turkey.
Abstract:
In the present study, NF-κB inhibitor BAY 11-7082 and/or Hsp-27 inhibitor KRIBB-3 agents were used to investigate the molecular mechanisms mediating androgen receptor expression on prostate cancer cell lines. The decrease observed in androgen receptor and p65 expressions, particularly at 48 h, in parallel with the decrease in the phosphorylation of the p-IKK α/β and p-Hsp-27 proteins in the LNCaP cells, indicated that androgen receptor inactivation occurred after the inhibition of the NF-κB and Hsp-27. In 22Rv1 cells, androgen receptor variant-7 was also observed to be decreased in the combined dose of 48 h. The association of this decrease with the decrease in androgen receptor and p65 expressions is a supportive result for the role of NF-κB signaling in the formation of androgen receptor variant. In androgen receptor variant-7 siRNA treatment in 22Rv1 cell lines, decrease of expression of androgen receptor variant-7 as well as decrease of expression of androgen receptor and p65 were observed. The decrease statistically significant in androgen receptor and p65 expressions was even greater when siRNA treatment was followed with low dose and time (6 h) combined treatment after transfection. We also showed that increased Noxa and decreased Bcl-2 protein level, indicated that apoptotic induction after this combination. In conclusion, inhibition of NF-κB and Hsp-27 is also important, along with therapies for androgen receptor variant-7 inhibition.
Insights
Inhibiting NF-κB and Hsp-27 reduces androgen receptor expression and promotes apoptosis in prostate cancer cells. This suggests combined therapies targeting NF-κB, Hsp-27, and androgen receptor variant-7 are crucial.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Prostate cancer progression is linked to androgen receptor (AR) signaling.
- AR variants, such as AR-V7, contribute to treatment resistance.
- NF-κB and Heat Shock Protein 27 (Hsp-27) pathways are implicated in cancer cell survival and AR expression.
Purpose of the Study:
- To investigate the molecular mechanisms of AR expression regulation in prostate cancer cells.
- To explore the role of NF-κB and Hsp-27 inhibition in modulating AR signaling.
- To assess the potential of combined therapeutic strategies involving NF-κB, Hsp-27, and AR-V7 inhibition.
Main Methods:
- Utilized NF-κB inhibitor BAY 11-7082 and Hsp-27 inhibitor KRIBB-3 in LNCaP and 22Rv1 prostate cancer cell lines.
- Administered siRNA targeting AR-V7 in 22Rv1 cells.
- Analyzed protein expression levels of AR, p65, p-IKK α/β, p-Hsp-27, Noxa, and Bcl-2.
- Evaluated phosphorylation status of key signaling proteins.
Main Results:
- Inhibition of NF-κB and Hsp-27 led to decreased AR and p65 expression, particularly after 48 hours in LNCaP cells, correlating with reduced p-IKK α/β and p-Hsp-27.
- Combined treatment with NF-κB and Hsp-27 inhibitors, as well as AR-V7 siRNA, significantly reduced AR-V7, AR, and p65 expression in 22Rv1 cells.
- The combination therapy induced apoptosis, evidenced by increased Noxa and decreased Bcl-2 protein levels.
Conclusions:
- NF-κB and Hsp-27 signaling pathways play a significant role in regulating AR expression and are involved in AR variant formation.
- Combined inhibition of NF-κB, Hsp-27, and AR-V7 demonstrates therapeutic potential by inducing apoptosis in prostate cancer cells.
- Targeting NF-κB and Hsp-27 is a promising strategy to enhance therapies aimed at AR-V7 inhibition in prostate cancer treatment.
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