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Published on: May 14, 2016
A novel organoselenium compound induces cell cycle arrest and apoptosis in prostate cancer cell lines
Changjin Shi1, Lizhang Yu, Fengguang Yang
1Department of Molecular Biology, Institute of Urology, First Hospital, Peking University, Beijing 100034, China.
Abstract:
Thioredoxin reductase (TrxR) in conjunction with thioredoxin (Trx) is a ubiquitous intracellular oxidoreductase system with antioxidant and redox regulatory roles. The properties of TrxR in combination with the functions of Trx position this system at the core of cellular thiol redox control and antioxidant defense. In some human tumors, the thioredoxin system is found over-expressed. Because of its role in stimulating cancer cell growth and as an inhibitor of apoptosis, the Trx system offers a target for the development of drugs to treat and prevent cancer. In a previous research, we successfully synthesized a novel organoselenium compound BBSKE(1,2-[bis(1,2-Benzisoselenazolone-3(2H)-ketone)]ethane, BBSKE, PCT: CN02/00412) targeting the TrxR, and it has demonstrated the inhibitory effect on the growth of a variety of human cancer cells from various organs. In this study, we investigated the inhibitory effect of BBSKE on TrxR activity in PC-3 and DU145 human prostate cancer cell lines, and its antitumoral effect on these two cell lines. Treatment of BBSKE inhibited the TrxR activity in both of the cell lines in a dose-dependent manner and it also inhibited the proliferation of these two cell lines in a dose-dependent manner. Cell cycle analysis showed S phase arrest in both of the cell lines following 48 h exposure to BBSKE. During the S arrest, analysis of cell cycle regulatory proteins demonstrated that BBSKE increased the protein levels of cyclinA, cyclinE, and P21, but decreased the levels of cyclinB1, cyclinD1, and Cdk4. Furthermore, BBSKE decreased the protein level of Bcl-2 but increased the level of Bax, and induced apoptosis in PC-3 and DU145 human prostate cancer cell lines. These results suggest that this novel TrxR inhibitor inhibits the proliferation of prostate cancer cells via S phase arrest and apoptosis in association with the regulation of multiple molecules in the cell cycle.
Insights
A novel organoselenium compound, BBSKE, effectively inhibits prostate cancer cell growth by targeting thioredoxin reductase (TrxR). BBSKE induces S phase arrest and apoptosis, offering a potential therapeutic strategy for prostate cancer.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- The thioredoxin reductase (TrxR)/thioredoxin (Trx) system is crucial for cellular redox balance and antioxidant defense.
- Overexpression of the Trx system is observed in some human tumors, making it a potential target for cancer therapy.
- Previous research synthesized BBSKE, an organoselenium compound targeting TrxR, showing broad anticancer effects.
Purpose of the Study:
- To investigate the inhibitory effect of BBSKE on TrxR activity in human prostate cancer cell lines (PC-3 and DU145).
- To evaluate the antitumoral effects of BBSKE on these prostate cancer cell lines.
- To elucidate the mechanisms underlying BBSKE's antiproliferative action, including cell cycle regulation and apoptosis induction.
Main Methods:
- Treatment of PC-3 and DU145 cells with varying doses of BBSKE.
- Assay of TrxR activity and cell proliferation.
- Cell cycle analysis using flow cytometry.
- Western blot analysis of cell cycle regulatory proteins (cyclins, CDKs, p21) and apoptosis-related proteins (Bcl-2, Bax).
Main Results:
- BBSKE inhibited TrxR activity and cell proliferation in a dose-dependent manner in both cell lines.
- BBSKE induced S phase arrest in PC-3 and DU145 cells after 48 hours of exposure.
- BBSKE modulated the expression of cell cycle proteins (increased cyclin A, cyclin E, p21; decreased cyclin B1, cyclin D1, Cdk4) and apoptosis markers (decreased Bcl-2, increased Bax), leading to apoptosis.
Conclusions:
- The novel TrxR inhibitor BBSKE demonstrates significant antiproliferative effects on human prostate cancer cells.
- BBSKE exerts its antitumoral action by inducing S phase arrest and apoptosis.
- The mechanism involves the regulation of key cell cycle and apoptosis-related molecules, highlighting BBSKE as a promising therapeutic candidate for prostate cancer.
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