USP7 and Daxx regulate mitosis progression and taxane sensitivity by affecting stability of Aurora-A kinase
S Giovinazzi1, V M Morozov, M K Summers
1Department of Anatomy and Cell Biology, University of Florida, Gainesville, FL 32610, USA.
Abstract:
A large number of patients are resistant to taxane-based chemotherapy. Functional mitotic checkpoints are essential for taxane sensitivity. Thus, mitotic regulators are potential markers for therapy response and could be targeted for anticancer therapy. In this study, we identified a novel function of ubiquitin (Ub)-specific processing protease-7 (USP7) that interacts and cooperates with protein death domain-associated protein (Daxx) in the regulation of mitosis and taxane resistance. Depletion of USP7 impairs mitotic progression, stabilizes cyclin B and reduces stability of the mitotic E3 Ub ligase, checkpoint with forkhead and Ring-finger (CHFR). Consequently, cells with depleted USP7 accumulate Aurora-A kinase, a CHFR substrate, thus elevating multipolar mitoses. We further show that these effects are independent of the USP7 substrate p53. Thus, USP7 and Daxx are necessary to regulate proper execution of mitosis, partially via regulation of CHFR and Aurora-A kinase stability. Results from colony formation assay, in silico analysis across the NCI60 platform and in breast cancer patients suggest that USP7 levels inversely correlate with response to taxanes, pointing at the USP7 protein as a potential predictive factor for taxane response in cancer patients. In addition, we demonstrated that inhibition of Aurora-A attenuates USP7-mediated taxane resistance, suggesting that combinatorial drug regimens of Taxol and Aurora-A inhibitors may improve the outcome of chemotherapy response in cancer patients resistant to taxane treatment. Finally, our study offers novel insights on USP7 inhibition as cancer therapy.
Insights
Ubiquitin-specific processing protease-7 (USP7) and Daxx regulate mitosis and taxane resistance. USP7 levels predict patient response to taxane chemotherapy, suggesting USP7 as a therapeutic target.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cancer Therapeutics
Background:
- Taxane chemotherapy resistance is a significant clinical challenge.
- Mitotic checkpoints are crucial for taxane sensitivity.
- Mitotic regulators are potential therapeutic targets and response markers.
Purpose of the Study:
- To identify novel regulators of mitosis and taxane resistance.
- To investigate the role of ubiquitin (Ub)-specific processing protease-7 (USP7) and its interaction with death domain-associated protein (Daxx).
- To explore USP7 as a predictive marker for taxane response and a therapeutic target.
Main Methods:
- Depletion of USP7 using siRNA.
- Analysis of mitotic progression, protein stability (cyclin B, CHFR, Aurora-A kinase).
- Colony formation assays, in silico analysis (NCI60), patient data analysis, and drug inhibition studies.
Main Results:
- USP7 depletion impairs mitosis, stabilizes cyclin B, and destabilizes CHFR, leading to Aurora-A accumulation and multipolar mitoses.
- USP7's role in mitosis is independent of p53.
- USP7 levels inversely correlate with taxane response in silico and in breast cancer patients.
- Aurora-A inhibition reduces USP7-mediated taxane resistance.
Conclusions:
- USP7 and Daxx are essential for proper mitosis and taxane sensitivity.
- USP7 is a potential predictive biomarker for taxane chemotherapy response.
- Targeting USP7 or combining Taxol with Aurora-A inhibitors may overcome taxane resistance.
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