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Microtubule Binding Assay in CRC Cells: A Method to Examine Microtubule Binding Tau Protein in Colorectal Cancer Cells
Published on: April 30, 2023
Importin-β/karyopherin-β1 modulates mitotic microtubule function and taxane sensitivity in cancer cells via its
Annalisa Verrico1,2, Paola Rovella1, Laura Di Francesco3
1Institute of Molecular Biology and Pathology (IBPM), CNR Consiglio Nazionale delle Ricerche, 00185, Rome, Italy.
Abstract:
The nuclear transport receptor importin-β/karyopherin-β1 is overexpressed in cancers that display genomic instability. It is regarded as a promising cancer target and inhibitors are being developed. In addition to its role in nucleo-cytoplasmic transport, importin-β regulates mitosis, but the programmes and pathways in which it operates are defined only in part. To unravel importin-β's mitotic functions we have developed cell lines expressing either wild-type or a mutant importin-β form in characterised residues required for nucleoporin binding. Both forms similarly disrupted spindle pole organisation, while only wild-type importin-β affected microtubule plus-end function and microtubule stability. A proteome-wide search for differential interactors identified a set of spindle regulators sensitive to mutations in the nucleoporin-binding region. Among those, HURP (hepatoma up-regulated protein) is an importin-β interactor and a microtubule-stabilising factor. We found that induction of wild type, but not mutant importin-β, under the same conditions that destabilise mitotic microtubules, delocalised HURP, indicating that the spatial distribution of HURP along the spindle requires importin-β's nucleoporin-binding residues. Concomitantly, importin-β overexpression sensitises cells to taxanes and synergistically increases mitotic cell death. Thus, the nucleoporin-binding domain is dispensable for importin-β function in spindle pole organisation, but regulates microtubule stability, at least in part via HURP, and renders cells vulnerable to certain microtubule-targeting drugs.
Insights
Importin-β (karyopherin-β1) overexpression in cancer impacts mitosis and microtubule stability, partly via HURP. Its nucleoporin-binding domain is crucial for these effects and sensitizes cells to taxanes.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cancer Therapeutics
Background:
- Importin-β (karyopherin-β1) is overexpressed in cancers with genomic instability and is a potential therapeutic target.
- While known for nuclear transport, importin-β's role in mitosis is not fully understood.
Purpose of the Study:
- To elucidate the specific mitotic functions of importin-β.
- To investigate the role of importin-β's nucleoporin-binding domain in its mitotic activities.
Main Methods:
- Developed cell lines expressing wild-type or mutant importin-β (lacking nucleoporin binding).
- Analyzed spindle pole organization and microtubule dynamics.
- Performed proteome-wide interactome studies.
- Investigated the interaction with HURP (hepatoma up-regulated protein).
Main Results:
- Both wild-type and mutant importin-β disrupted spindle pole organization.
- Only wild-type importin-β affected microtubule plus-end function and stability.
- Mutations in the nucleoporin-binding region altered interactions with spindle regulators, including HURP.
- Importin-β's nucleoporin-binding domain is required for proper HURP localization and microtubule stabilization.
- Importin-β overexpression sensitizes cancer cells to taxanes, increasing mitotic cell death.
Conclusions:
- The nucleoporin-binding domain of importin-β is essential for regulating microtubule stability, partly through HURP.
- This domain is dispensable for spindle pole organization but critical for importin-β's role in taxane sensitivity and mitotic cell death.
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