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Long-term Live-cell Imaging to Assess Cell Fate in Response to Paclitaxel
Published on: May 14, 2018
Ovarian Tumor Cell Expression of Claudin-4 Reduces Apoptotic Response to Paclitaxel
Christopher Breed1,2, Douglas A Hicks1, Patricia G Webb1
1Department of Obstetrics and Gynecology, Division of Reproductive Sciences, Anschutz Medical Campus, University of Colorado Denver, Aurora, Colorado.
Abstract:
A significant factor contributing to poor survival rates for patients with ovarian cancer is the insensitivity of tumors to standard-of-care chemotherapy. In this study, we investigated the effect of claudin-4 expression on ovarian tumor cell apoptotic response to cisplatin and paclitaxel. We manipulated claudin-4 gene expression by silencing expression [short hairpin RNA (shRNA)] in cells with endogenously expressed claudin-4 or overexpressing claudin-4 in cells that natively do not express claudin-4. In addition, we inhibited claudin-4 activity with a claudin mimic peptide (CMP). We monitored apoptotic response by caspase-3 and Annexin V binding. We examined proliferation rate by counting the cell number over time as well as measuring the number of mitotic cells. Proximity ligation assays, immunoprecipitation (IP), and immunofluorescence were performed to examine interactions of claudin-4. Western blot analysis of tubulin in cell fractions was used to determine the changes in tubulin polymerization with changes in claudin-4 expression. Results show that claudin-4 expression reduced epithelial ovarian cancer (EOC) cell apoptotic response to paclitaxel. EOCs without claudin-4 proliferated more slowly with enhanced mitotic arrest compared with the cells expressing claudin-4. Furthermore, our results indicate that claudin-4 interacts with tubulin, having a profound effect on the structure and polymerization of the microtubule network. In conclusion, we demonstrate that claudin-4 reduces the ovarian tumor cell response to microtubule-targeting paclitaxel and disrupting claudin-4 with CMP can restore apoptotic response. IMPLICATIONS: These results suggest that claudin-4 expression may provide a biomarker for paclitaxel response and can be a target for new therapeutic strategies to improve response.
Insights
Claudin-4 expression in ovarian cancer cells reduces apoptosis in response to paclitaxel chemotherapy. Inhibiting claudin-4 with a peptide restores sensitivity, suggesting claudin-4 as a potential biomarker and therapeutic target.
Area of Science:
- Oncology
- Cell Biology
- Molecular Medicine
Background:
- Ovarian cancer survival is poor due to chemotherapy resistance.
- Claudin-4's role in chemoresistance is not fully understood.
Purpose of the Study:
- To investigate claudin-4's effect on ovarian cancer cell apoptosis and proliferation in response to chemotherapy.
- To explore claudin-4's interaction with cellular components involved in drug response.
Main Methods:
- Claudin-4 gene expression was manipulated (silencing/overexpression).
- Apoptotic response was measured using caspase-3 and Annexin V assays.
- Cell proliferation and tubulin polymerization were analyzed.
- Claudin-4 interactions were examined via proximity ligation, IP, and immunofluorescence.
Main Results:
- Claudin-4 expression decreased apoptotic response to paclitaxel in epithelial ovarian cancer (EOC) cells.
- EOC cells lacking claudin-4 showed slower proliferation and increased mitotic arrest.
- Claudin-4 was found to interact with tubulin, affecting microtubule network structure and polymerization.
Conclusions:
- Claudin-4 reduces ovarian tumor cell response to paclitaxel by affecting the microtubule network.
- Disrupting claudin-4 with a claudin mimic peptide (CMP) can restore apoptotic response.
- Claudin-4 may serve as a biomarker for paclitaxel response and a therapeutic target.
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