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Updated: Jun 1, 2026

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Published on: September 8, 2017
Regulation of mitosis and taxane response by Daxx and Rassf1
S Giovinazzi1, C R Lindsay, V M Morozov
1Department of Anatomy and Cell Biology, University of Florida Shands Cancer Center, Gainesville, FL 32610, USA.
Abstract:
Current theories suggest that mitotic checkpoint proteins are essential for proper cellular response to taxanes, a widely used family of chemotherapeutic compounds. We recently showed that absence or depletion of protein Daxx increases cellular taxol (paclitaxel) resistance-a common trait of patients diagnosed with several malignancies, including breast cancer. Further investigation of Daxx-mediated taxol response revealed that Daxx is important for the proper timing of mitosis progression and cyclin B stability. Daxx interacts with mitotic checkpoint protein RAS-association domain family protein 1 (Rassf1) and partially colocalizes with this protein during mitosis. Rassf1/Daxx depletion or expression of Daxx-binding domain of Rassf1 elevates cyclin B stability and increases taxol resistance in cells and mouse xenograft models. In breast cancer patients, we observed the inverse correlation between Daxx and clinical response to taxane-based chemotherapy. These data suggest that Daxx and Rassf1 define a mitotic stress checkpoint that enables cells to exit mitosis as micronucleated cells (and eventually die) when encountered with specific mitotic stress stimuli, including taxol. Surprisingly, depletion of Daxx or Rassf1 does not change the activity of E3 ubiquitin ligase anaphase promotion complex/C in in vitro settings, suggesting the necessity of mitotic cellular environment for proper activation of this checkpoint. Daxx and Rassf1 may become useful predictive markers for the proper selection of patients for taxane chemotherapy.
Insights
Protein Daxx and Rassf1 are crucial for taxane chemotherapy response. Their absence increases taxol resistance, suggesting they could predict patient response to taxane-based treatments.
Area of Science:
- Cell Biology
- Cancer Research
- Molecular Oncology
Background:
- Taxanes are vital chemotherapeutics, but resistance limits efficacy.
- Protein Daxx absence correlates with increased taxol resistance in malignancies.
- Daxx influences mitosis progression and cyclin B stability.
Purpose of the Study:
- Investigate Daxx's role in taxol response.
- Elucidate the interaction between Daxx and Rassf1 in mitosis.
- Determine the clinical relevance of Daxx and Rassf1 in taxane chemotherapy.
Main Methods:
- Studied Daxx and Rassf1 protein interactions and localization during mitosis.
- Assessed taxol resistance in cells and mouse models with Daxx/Rassf1 depletion.
- Analyzed Daxx expression in breast cancer patients undergoing taxane therapy.
Main Results:
- Daxx depletion enhances taxol resistance by affecting mitosis timing and cyclin B stability.
- Daxx interacts with Rassf1, and their combined absence increases taxol resistance.
- Inverse correlation observed between Daxx levels and patient response to taxanes.
Conclusions:
- Daxx and Rassf1 form a mitotic stress checkpoint influencing taxol response.
- This checkpoint involves proper mitosis exit and cell death.
- Daxx and Rassf1 may serve as predictive biomarkers for taxane chemotherapy selection.
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