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Stathmin potentiates vinflunine and inhibits Paclitaxel activity
Soazig Malesinski1, Philipp O Tsvetkov2, Anna Kruczynski3
1Aix-Marseille Université, Inserm, CRO2 UMR_S 911, Faculté de Pharmacie, Marseille, France.
Abstract:
Cell biology and crystallographic studies have suggested a functional link between stathmin and microtubule targeting agents (MTAs). In a previous study we showed that stathmin increases vinblastine (VLB) binding to tubulin, and that conversely VLB increases stathmin binding to tubulin. This constituted the first biochemical evidence of the direct relationship between stathmin and an antimitotic drug, and revealed a new mechanism of action for VLB. The question remained if the observed interaction was specific for this drug or represented a general phenomenon for all MTAs. In the present study we investigated the binding of recombinant stathmin to purified tubulin in the presence of paclitaxel or another Vinca alkaloid, vinflunine, using Isothermal Titration Calorimetry (ITC). These experiments revealed that stathmin binding to tubulin is increased in the presence of vinflunine, whereas no signal is observed in the presence of paclitaxel. Further investigation using turbidity and co-sedimentation showed that stathmin inhibited paclitaxel microtubule-stabilizing activity. Taken together with the previous study using vinblastine, our results suggest that stathmin can be seen as a modulator of MTA activity and binding to tubulin, providing molecular explanation for multiple previous cellular and in vivo studies showing that stathmin expression level affects MTAs efficiency.
Insights
Stathmin modulates microtubule targeting agents (MTAs) by influencing their binding to tubulin. This protein affects vinflunine binding but inhibits paclitaxel
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Cell biology and crystallography suggest a link between stathmin and microtubule targeting agents (MTAs).
- Previous work demonstrated stathmin enhances vinblastine (VLB) binding to tubulin, and vice versa, revealing a VLB mechanism of action.
Purpose of the Study:
- To investigate if the stathmin-VLB interaction is specific or a general phenomenon for MTAs.
- To explore stathmin's interaction with tubulin in the presence of paclitaxel and vinflunine.
Main Methods:
- Isothermal Titration Calorimetry (ITC) to study binding.
- Turbidity assays and co-sedimentation experiments to assess microtubule stabilization.
Main Results:
- Stathmin binding to tubulin increased with vinflunine, but no signal was detected with paclitaxel.
- Stathmin inhibited paclitaxel's microtubule-stabilizing activity.
- Stathmin acts as a modulator of MTA activity and tubulin binding.
Conclusions:
- Stathmin's interaction with MTAs is not universal, showing drug-specific effects.
- Stathmin modulates the activity and tubulin binding of certain MTAs, like vinflunine.
- Results provide a molecular basis for how stathmin expression affects MTA efficiency in cellular and in vivo studies.
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