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.

Oncogene
|September 8, 2019
PubMed

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.

Related Concept Videos

Microtubule Binding Assay in CRC Cells: A Method to Examine Microtubule Binding Tau Protein in Colorectal Cancer Cells04:28

Microtubule Binding Assay in CRC Cells: A Method to Examine Microtubule Binding Tau Protein in Colorectal Cancer Cells

This video describes the microtubule-binding assay used to separate the microtubule-binding tau protein from non-binding hyperphosphorylated tau protein fractions in colorectal cancer cells. This assay helps determine the effect of various chemicals that can alter the phosphorylation status of tau protein, affecting its microtubule...
1.3K
Live Imaging to Study Microtubule Dynamic Instability in Taxane-resistant Breast Cancers06:02

Live Imaging to Study Microtubule Dynamic Instability in Taxane-resistant Breast Cancers

In this paper, we report a protocol describing an in vivo method to measure microtubule dynamic instability in docetaxel-resistant breast cancer cells (MCF-7TXT). In this method, a deconvolution microscopy imaging system is used to detect the expression of GFP-tubulin in target cells.
7.9K
Assay for Phosphorylation and Microtubule Binding Along with Localization of Tau Protein in Colorectal Cancer Cells12:55

Assay for Phosphorylation and Microtubule Binding Along with Localization of Tau Protein in Colorectal Cancer Cells

This manuscript describes standard protocols for measuring tau hyperphosphorylation, measuring tau binding to microtubules, and localization of intracellular tau following drug treatments. These protocols can be used repetitively for screening drugs or other compounds that target tau hyperphosphorylation or microtubule...
9.4K
Measurement of Microtubule Dynamics by Spinning Disk Microscopy in Monopolar Mitotic Spindles08:31

Measurement of Microtubule Dynamics by Spinning Disk Microscopy in Monopolar Mitotic Spindles

Here we present a robust and detailed method of microtubule dynamics analysis in cells synchronized in prometaphase using live-cell spinning disk confocal microscopy and MATLAB-based image...
6.6K
An Assay for Analyzing Test β-Glucan as an Immunotherapy Strategy against Brain Cancer Cells02:25

An Assay for Analyzing Test β-Glucan as an Immunotherapy Strategy against Brain Cancer Cells

This video demonstrates an in vitro assay utilizing β-glucans to activate microglial cells for the production of superoxide radicals, a reactive oxygen species. In brain cancer cells, the generated reactive oxidants actively suppress tumor cell proliferation and induce cell...
443
Generation of Prostate Cancer Cell Models of Resistance to the Anti-mitotic Agent Docetaxel06:44

Generation of Prostate Cancer Cell Models of Resistance to the Anti-mitotic Agent Docetaxel

Resistance to cancer therapies contributes to disease progression and death. Determining the mechanistic underpinnings of resistance is crucial for improving therapeutic response. This manuscript details the protocol to generate taxane-resistant cell models of prostate cancer (PC) to help dissecting the pathways involved in progression to Docetaxel resistance in PC...
14.0K