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Live Imaging to Study Microtubule Dynamic Instability in Taxane-resistant Breast Cancers
Published on: February 20, 2017
Bcl-2 down-regulation is a novel mechanism of paclitaxel resistance
Cristiano Ferlini1, Giuseppina Raspaglio, Simona Mozzetti
1Department of Obstetrics and Gynaecology, Università Cattolica Sacro Cuore, L.go A. Gemelli 8, 00168, Rome, Italy. cferlini@rm.unicatt.it
Abstract:
Taxanes act by inhibiting microtubule dynamics; in this study, we have investigated mitochondria as an additional target of taxanes. We incubated isolated mitochondria in the presence of taxanes with or without stimulation of the mitochondrial respiratory state. Results showed that they rapidly induced the loss of deltapsim after stimulation of the respiratory state. To evaluate the binding of [14C]paclitaxel to isolated mitochondria, mitochondrial proteins were precipitated yielding 18.6 +/- 2.1 cpm/microg of protein. After stimulation of the respiratory state, binding of [14C]paclitaxel increased up to 163.2 +/- 46.7 cpm/microg of protein. CPM values after Bcl-2 immunoprecipitation was 62.8-fold higher than those of the control antibody, thereby indicating the involvement of Bcl-2 in paclitaxel binding. Then, we established a panel of A2780 cell lines resistant to increasing doses of paclitaxel alone or to high doses of paclitaxel/cyclosporin A (A2780 TC cells). In both cases, Bcl-2 expression was consistently down-regulated, whereas levels of other members of the Bcl-2 family, such as Bax and Bcl-x, did not change in paclitaxel-resistant cell lines. When A2780TC cells were stably transfected with a Bcl-2 construct, paclitaxel sensitivity was partially restored, thereby supporting a direct role of Bcl-2 down-regulation in the maintenance of drug-resistance. Finally, we examined Bcl-2 by immunohistochemistry in a small subset of ovarian cancer paclitaxel-resistant patients and we noticed that the protein is down-regulated in this clinical setting with respect to the expression levels found in drug-sensitive tumors. These findings demonstrate that Bcl-2 is an additional intracellular target of taxanes and that its down-regulation is involved in taxane resistance.
Insights
Taxanes target mitochondria, impacting cell respiration and paclitaxel binding. Down-regulation of Bcl-2 protein contributes to taxane resistance in cancer cells and patients.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Taxanes are chemotherapy drugs that inhibit microtubule dynamics.
- Mitochondria play a crucial role in cellular processes and cancer progression.
- The precise mechanisms of taxane action and resistance are still under investigation.
Purpose of the Study:
- To investigate mitochondria as a potential target of taxanes.
- To explore the role of Bcl-2 in taxane binding and drug resistance.
- To examine the clinical relevance of Bcl-2 down-regulation in taxane-resistant cancers.
Main Methods:
- Incubation of isolated mitochondria with taxanes and assessment of mitochondrial membrane potential (deltapsim).
- Measurement of [14C]paclitaxel binding to isolated mitochondria and Bcl-2 immunoprecipitation.
- Development and analysis of paclitaxel-resistant A2780 cell lines (A2780 TC cells) with varying Bcl-2 expression.
- Immunohistochemical analysis of Bcl-2 in ovarian cancer patient tissues.
Main Results:
- Taxanes induced rapid loss of mitochondrial membrane potential upon respiratory stimulation.
- [14C]paclitaxel binding to mitochondria increased significantly after respiratory stimulation, with enhanced binding to Bcl-2.
- Paclitaxel-resistant cell lines exhibited down-regulated Bcl-2 expression, while Bax and Bcl-x levels remained unchanged.
- Restoration of Bcl-2 expression partially re-sensitized resistant cells to paclitaxel.
- Down-regulation of Bcl-2 was observed in drug-resistant ovarian cancer patients.
Conclusions:
- Mitochondria are an additional intracellular target of taxanes.
- Bcl-2 is involved in paclitaxel binding to mitochondria.
- Down-regulation of Bcl-2 is a key mechanism contributing to taxane resistance.
- Targeting Bcl-2 may offer a strategy to overcome taxane resistance in cancer therapy.
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