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Published on: November 2, 2014
Claudin-4 activity in ovarian tumor cell apoptosis resistance and migration
Douglas A Hicks1, Carly E Galimanis1, Patricia G Webb1
1Division of Reproductive Sciences, Department of Obstetrics and Gynecology, University of Colorado Denver, Anschutz Medical Campus, Mail Stop 8613, 12700 E. 19th Avenue, Aurora, Colorado, 80045, USA.
Background:
Claudin-4 is a transmembrane protein expressed at high levels in the majority of epithelial ovarian tumors, irrespective of subtype, and has been associated with tumor cells that are both chemoresistant and highly mobile. The objective of this study was to determine the functional role that claudin-4 plays in apoptosis resistance and migration as well as the therapeutic utility of targeting claudin-4 activity with a small mimic peptide.
Methods:
We examined claudin-4 activity in human ovarian tumor cell lines (SKOV3, OVCAR3, PEO4) using in vitro caspase and scratch assays as well as an in vivo mouse model of ovarian cancer. Claudin-4 activity was disrupted by treating cells with a small peptide that mimics the DFYNP sequence in the second extracellular loop of claudin-4. Claudin-4 expression was also altered using shRNA-mediated gene silencing.
Results:
Both the disruption of claudin-4 activity and the loss of claudin-4 expression significantly increased tumor cell caspase-3 activation (4 to 10-fold, respectively) in response to the apoptotic inducer staurosporine and reduced tumor cell migration by 50 %. The mimic peptide had no effect on cells that lacked claudin-4 expression. Female athymic nude mice bearing ZsGreen-PEO4 ovarian tumors showed a significant decrease in ovarian tumor burden, due to increased apoptosis, after treatment with intraperitoneal injections of 4 mg/kg mimic peptide every 48 h for three weeks, compared to control peptide treated mice.
Conclusion:
Claudin-4 functionally contributes to both ovarian tumor cell apoptosis resistance and migration and targeting extracellular loop interactions of claudin-4 may have therapeutic implications for reducing ovarian tumor burden.
Insights
Claudin-4 promotes ovarian tumor cell survival and migration. Targeting claudin-4 with a mimic peptide reduced tumor burden by increasing apoptosis and decreasing migration in mouse models.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Claudin-4 is a transmembrane protein highly expressed in epithelial ovarian tumors.
- High claudin-4 levels correlate with chemoresistance and tumor cell mobility.
- Claudin-4's role in apoptosis resistance and migration is not fully understood.
Purpose of the Study:
- To investigate the functional role of claudin-4 in ovarian cancer.
- To assess the therapeutic potential of targeting claudin-4 with a mimic peptide.
Main Methods:
- Utilized human ovarian tumor cell lines (SKOV3, OVCAR3, PEO4).
- Assessed claudin-4 activity using in vitro caspase and scratch assays.
- Employed an in vivo mouse model of ovarian cancer with shRNA-mediated gene silencing and a claudin-4 mimic peptide.
Main Results:
- Disrupting claudin-4 activity or expression increased apoptosis by 4-10 fold.
- Claudin-4 inhibition reduced tumor cell migration by 50%.
- Treatment with a claudin-4 mimic peptide significantly decreased tumor burden in mice.
Conclusions:
- Claudin-4 is a key functional contributor to ovarian tumor cell apoptosis resistance and migration.
- Targeting extracellular loop interactions of claudin-4 offers therapeutic potential for ovarian cancer.
- Claudin-4 mimic peptide therapy may reduce ovarian tumor burden by enhancing apoptosis.
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