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.

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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