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Galectin-3 mediates genistein-induced G(2)/M arrest and inhibits apoptosis
1Department of Pathology and Breast Cancer Program, Barbara Ann Karmanos Cancer Institute, Wayne State University, School of Medicine, Detroit, MI 48201, USA.
Abstract:
Many recent studies have focused on potential chemopreventive activities of dietary genistein, a natural isoflavonoid compound found in soy products. Genistein has been implicated in anticancer activities, including differentiation, apoptosis, inhibition of cell growth and inhibition of angiogenesis. In previous studies, genistein was shown to induce apoptosis and cell cycle arrest at G(2)/M in several cancer cell lines in vitro, which is associated with induction of p21(WAF1/CIP1), a universal inhibitor of cyclin-dependent kinases. At present, the molecular basis for diverse genistein-mediated cellular responses is largely unknown. In the present study, we investigated whether galectin-3, an anti-apoptotic gene product, regulates genistein-mediated cellular responses. We show that genistein effectively induces apoptosis without detectable cell cycle arrest in BT549, a human breast epithelial cell line which does not express galectin-3 at a detectable level. In galectin-3 transfected BT549 cells, genistein induced cell cycle arrest at the G(2)/M phase without apoptosis induction. Interestingly, genistein induces p21(WAF1/CIP1) expression in galectin-3-expressing BT549 cells, but not in control BT549 cells undergoing apoptosis. Collectively, the results of the present study suggest that galectin-3, at least in part, is a critical determinant for genistein-mediated cell cycle arrest and apoptosis, and genistein induction of p21(WAF1/CIP1) is associated with cell cycle arrest, but not required for apoptosis induction.
Insights
Genistein, a soy compound, triggers apoptosis or cell cycle arrest. Galectin-3 influences genistein
Area of Science:
- Molecular Biology
- Cancer Research
- Biochemistry
Background:
- Dietary genistein, a soy isoflavonoid, exhibits potential chemopreventive and anticancer activities.
- Genistein is known to induce apoptosis and cell cycle arrest, often linked to p21(WAF1/CIP1) expression.
- The precise molecular mechanisms underlying genistein's diverse cellular effects remain unclear.
Purpose of the Study:
- To investigate the role of galectin-3, an anti-apoptotic protein, in mediating genistein's cellular effects.
- To elucidate the relationship between galectin-3 expression and genistein-induced apoptosis and cell cycle arrest.
Main Methods:
- Utilized BT549 human breast epithelial cells, a line lacking detectable galectin-3.
- Employed galectin-3 transfection in BT549 cells to study its regulatory role.
- Assessed genistein's effects on apoptosis, cell cycle progression (G2/M phase), and p21(WAF1/CIP1) expression.
Main Results:
- Genistein induced apoptosis but not cell cycle arrest in galectin-3-negative BT549 cells.
- In galectin-3-expressing BT549 cells, genistein caused cell cycle arrest at G2/M without inducing apoptosis.
- Genistein upregulated p21(WAF1/CIP1) in galectin-3-expressing cells, correlating with cell cycle arrest, not apoptosis.
Conclusions:
- Galectin-3 is a critical determinant of genistein-mediated cell cycle arrest and apoptosis.
- Genistein's induction of p21(WAF1/CIP1) is associated with cell cycle arrest, but not essential for apoptosis.
- These findings highlight galectin-3's role in modulating cellular responses to genistein.