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Updated: May 25, 2026

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
Casein kinase 2 inhibition attenuates androgen receptor function and cell proliferation in prostate cancer cells
Kai Yao1, Hyewon Youn, Xiaoyan Gao
1Department of Urology, Sun Yat-sun Uinversity Cancer Center, Guangzhou, China.
Background:
Casein kinase 2 (CK2) is constitutively active with dual specificity and exists as a hetero-tetrameric complex of α, α', and β subunits. Its aberrant expression and elevated activity have been linked to many human cancers, including prostate cancer. As an effort to develop new chemotherapy for prostate cancers, in this study, we tested the effects of tetra-bromo-cinnamic acid (TBCA), a newly synthetic CK2-selective CK2 inhibitor, on androgen receptor (AR) transactivation, cell proliferation, and viability in multiple prostate cancer cell lines.
Methods:
We utilized a comprehensive approach of a newly synthetic CK2-selective inhibitor TBCA, plus gene-specific siRNAs in multiple cell-based assays to further understand the role of CK2 in AR signaling. Alamar-blue-based cell growth assay, flow cytometry for cell cycle distribution, Luciferase report gene assay for AR transactivation, and immuno-fluorescent approach for AR nuclear localization as well as quantitative PCR assay for AR-mediated gene expression were utilized. The significance of the differences between treatment and control was analyzed using the SPSS software (SPSS, Chicago, IL).
Results:
Our data revealed that TBCA reduced cell proliferation and caused G2/M cell cycle arrest in a dose-dependent manner. Further analysis demonstrated that TBCA blocked AR nuclear translocation and gene expression. To confirm the target specificity, we used gene-specific siRNAs for both CK2α and CK2α' subunits, and the results suggested that both CK2 catalytic subunits are involved in androgen-stimulated AR nuclear translocation and AR-mediated gene expression in prostate cancer cells.
Conclusions:
CK2 subunits α and α' are likely involved in AR signaling, and TBCA might be useful in the management of prostate cancers as a chemo-preventive agent in the future.
Insights
Tetra-bromo-cinnamic acid (TBCA), a new casein kinase 2 (CK2) inhibitor, reduces prostate cancer cell proliferation and blocks androgen receptor (AR) signaling. This suggests TBCA could be a potential chemotherapy agent for prostate cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Casein kinase 2 (CK2) is constitutively active and implicated in various human cancers, including prostate cancer.
- Aberrant CK2 expression and activity are linked to prostate cancer progression.
Purpose of the Study:
- To investigate the effects of tetra-bromo-cinnamic acid (TBCA), a novel CK2-selective inhibitor, on prostate cancer.
- To evaluate TBCA's impact on androgen receptor (AR) transactivation, cell proliferation, and viability.
Main Methods:
- Utilized a CK2-selective inhibitor (TBCA) and gene-specific siRNAs in cell-based assays.
- Assessed cell proliferation (Alamar-blue assay), cell cycle (flow cytometry), AR transactivation (Luciferase assay), and AR nuclear localization (immunofluorescence).
Main Results:
- TBCA significantly reduced prostate cancer cell proliferation in a dose-dependent manner.
- TBCA treatment led to G2/M cell cycle arrest and inhibited AR nuclear translocation and gene expression.
- siRNA-mediated knockdown of CK2α/α' subunits confirmed their role in AR signaling.
Conclusions:
- CK2 subunits α and α' play a role in AR signaling pathways in prostate cancer.
- TBCA demonstrates potential as a chemo-preventive agent for prostate cancer management.
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