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Published on: September 8, 2017
CTEN/tensin 4 expression induces sensitivity to paclitaxel in prostate cancer
YouQiang Li1, Atsushi Mizokami, Kouji Izumi
1Department of Integrative Cancer Therapy and Urology, Kanazawa University Graduate School of Medical Sciences, Kanazawa, Japan.
Background:
Recently, we established paclitaxel-resistant prostate cancer cell lines (PC-3-TxR and DU145-TxR). To determine the mechanisms of paclitaxel resistance in PC-3-TxR cells, we compared the gene expression profiles between PC-3 and PC-3-TxR cells. Our results indicated that expression of the C-terminal tensin like protein (CTEN, tensin 4) gene was down-regulated by 10-fold in PC-3-TxR cells. We investigated the possibility that CTEN overexpression restores paclitaxel sensitivity.
Methods:
We investigated how knockdown and overexpression of CTEN in androgen-independent cell lines affect paclitaxel sensitivity by colony formation assay and growth inhibition assay. To determine the mechanisms by which CTEN affects paclitaxel sensitivity, we investigated the relationships between CTEN and F-actin or epidermal growth factor receptor (EGFR) in PC-3 cells. We also examined the association between expression of CTEN and grade of prostate cancer by immunohistochemistry using tissue microarray analysis.
Results:
Down-regulation of CTEN, which is located in the cytoskeleton, played an important role in paclitaxel resistance in PC-3-TxR cells. Knockdown of CTEN expression in PC-3 cells induced paclitaxel resistance. Overexpression of CTEN in PC-3-TxR and DU145-TxR cells restored paclitaxel sensitivity. CTEN expression was inversely correlated with F-actin and EGFR expression. Then knockdown of actin and EGFR in PC-3-TxR cells recovered paclitaxel sensitivity, indicating that CTEN down-regulation mediates paclitaxel resistance through elevation of EGFR and actin expression. Moreover, CTEN expression was inversely correlated with Gleason score.
Conclusions:
These results strongly suggested that CTEN plays an important role in paclitaxel sensitivity and that CTEN expression level may be a prognostic predictive factor for PCa patients.
Insights
C-terminal tensin like protein (CTEN) down-regulation drives paclitaxel resistance in prostate cancer. Restoring CTEN levels re-sensitizes cancer cells to paclitaxel and may serve as a prognostic marker.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Paclitaxel resistance is a major challenge in prostate cancer treatment.
- Established paclitaxel-resistant prostate cancer cell lines (PC-3-TxR, DU145-TxR) were used to investigate resistance mechanisms.
- Gene expression profiling revealed a 10-fold down-regulation of C-terminal tensin like protein (CTEN) in PC-3-TxR cells.
Purpose of the Study:
- To determine the role of CTEN in paclitaxel resistance in prostate cancer.
- To investigate if CTEN overexpression can restore sensitivity to paclitaxel.
- To elucidate the molecular mechanisms by which CTEN influences paclitaxel sensitivity.
Main Methods:
- Knockdown and overexpression of CTEN in androgen-independent prostate cancer cell lines.
- Colony formation and growth inhibition assays to assess paclitaxel sensitivity.
- Immunohistochemistry on tissue microarrays to correlate CTEN expression with prostate cancer grade and Gleason score.
Main Results:
- CTEN down-regulation was confirmed as a key factor in paclitaxel resistance.
- CTEN knockdown induced paclitaxel resistance in PC-3 cells.
- CTEN overexpression restored paclitaxel sensitivity in resistant cell lines (PC-3-TxR, DU145-TxR).
- CTEN expression inversely correlated with F-actin and epidermal growth factor receptor (EGFR) expression; knockdown of actin and EGFR recovered paclitaxel sensitivity.
- CTEN expression was inversely correlated with Gleason score.
Conclusions:
- CTEN plays a critical role in modulating paclitaxel sensitivity in prostate cancer.
- CTEN expression levels may serve as a prognostic predictive factor for prostate cancer patients.
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