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Updated: Nov 17, 2025

Long-term Live-cell Imaging to Assess Cell Fate in Response to Paclitaxel
Published on: May 14, 2018
Antagonizing the spindle assembly checkpoint silencing enhances paclitaxel and Navitoclax-mediated apoptosis with
Ana C Henriques1,2,3, Patrícia M A Silva1, Bruno Sarmento1,2,4
1CESPU, Instituto de Investigação e Formação Avançada em Ciências e Tecnologias da Saúde, Instituto Universitário de Ciências da Saúde, Rua Central da Gandra 1317, Gandra, 4585-116, Paredes, Portugal.
Abstract:
Antimitotic drugs arrest cells in mitosis through chronic activation of the spindle assembly checkpoint (SAC), leading to cell death. However, drug-treated cancer cells can escape death by undergoing mitotic slippage, due to premature mitotic exit. Therefore, overcoming slippage issue is a promising chemotherapeutic strategy to improve the effectiveness of antimitotics. Here, we antagonized SAC silencing by knocking down the MAD2-binding protein p31comet, to delay mitotic slippage, and tracked cancer cells treated with the antimitotic drug paclitaxel, over 3 days live-cell time-lapse analysis. We found that in the absence of p31comet, the duration of mitotic block was increased in cells challenged with nanomolar concentrations of paclitaxel, leading to an additive effects in terms of cell death which was predominantly anticipated during the first mitosis. As accumulation of an apoptotic signal was suggested to prevent mitotic slippage, when we challenged p31comet-depleted mitotic-arrested cells with the apoptosis potentiator Navitoclax (previously called ABT-263), cell fate was shifted to accelerated post-mitotic death. We conclude that inhibition of SAC silencing is critical for enhancing the lethality of antimitotic drugs as well as that of therapeutic apoptosis-inducing small molecules, with distinct mechanisms. The study highlights the potential of p31comet as a target for antimitotic therapies.
Insights
Inhibiting p31comet prolongs mitotic arrest, enhancing cancer cell death from antimitotic drugs like paclitaxel. Combining this with apoptosis inducers like Navitoclax accelerates cell death, suggesting p31comet as a therapeutic target.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Antimitotic drugs induce cell death by activating the spindle assembly checkpoint (SAC).
- Cancer cells can evade antimitotic drugs through mitotic slippage, a premature exit from mitosis.
- Overcoming mitotic slippage is a key strategy to improve antimitotic drug efficacy.
Purpose of the Study:
- To investigate if antagonizing SAC silencing by inhibiting p31comet can prevent mitotic slippage.
- To determine if p31comet inhibition enhances cancer cell death induced by paclitaxel.
- To evaluate the combined effect of p31comet inhibition and apoptosis potentiators on cancer cell fate.
Main Methods:
- Knockdown of p31comet in cancer cells.
- Live-cell time-lapse analysis of cells treated with paclitaxel.
- Treatment with Navitoclax (ABT-263) in p31comet-depleted cells.
Main Results:
- p31comet knockdown increased the duration of mitotic arrest induced by paclitaxel.
- This prolonged arrest led to increased cell death, primarily during the first mitosis.
- Co-treatment with Navitoclax in p31comet-depleted cells accelerated post-mitotic cell death.
Conclusions:
- Inhibiting SAC silencing by targeting p31comet enhances the lethality of antimitotic drugs.
- This strategy also potentiates the effect of apoptosis-inducing drugs through distinct mechanisms.
- p31comet is a promising therapeutic target for improving antimitotic cancer therapies.
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