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Published on: October 5, 2014
Prometastatic NEDD9 Regulates Individual Cell Migration via Caveolin-1-Dependent Trafficking of Integrins
Polina Y Kozyulina1, Yuriy V Loskutov2, Varvara K Kozyreva2
1Department of Biochemistry, School of Medicine, West Virginia University, Morgantown, West Virginia. Institute of Cytology Russian Academy of Sciences, St. Petersburg, Russia.
Unlabelled:
The dissemination of tumor cells relies on efficient cell adhesion and migration, which in turn depends upon endocytic trafficking of integrins. In the current work, it was found that depletion of the prometastatic protein, NEDD9, in breast cancer cells results in a significant decrease in individual cell migration due to impaired trafficking of ligand-bound integrins. NEDD9 deficiency does not affect the expression or internalization of integrins but heightens caveolae-dependent trafficking of ligand-bound integrins to early endosomes. Increase in mobility of ligand-bound integrins is concomitant with an increase in tyrosine phosphorylation of caveolin-1 (CAV1) and volume of CAV1-vesicles. NEDD9 directly binds to CAV1 and colocalizes within CAV1 vesicles. In the absence of NEDD9, the trafficking of ligand-bound integrins from early to late endosomes is impaired, resulting in a significant decrease in degradation of ligand-integrin complexes and an increase in recycling of ligand-bound integrins from early endosomes back to the plasma membrane without ligand disengagement, thus leading to low adhesion and migration. Reexpression of NEDD9 or decrease in the amount of active, tyrosine 14 phosphorylated (Tyr14) CAV1 in NEDD9-depleted cells rescues the integrin trafficking deficiency and restores cellular adhesion and migration capacity. Collectively, these findings indicate that NEDD9 orchestrates trafficking of ligand-bound integrins through the attenuation of CAV1 activity.
Implications:
This study provides valuable new insight into the potential therapeutic benefit of NEDD9 depletion to reduce dissemination of tumor cells and discovers a new regulatory role of NEDD9 in promoting migration through modulation of CAV1-dependent trafficking of integrins.
Insights
The prometastatic protein NEDD9 regulates breast cancer cell migration by controlling integrin trafficking. Depleting NEDD9 impairs integrin movement, reducing tumor cell spread and offering a potential therapeutic strategy.
Area of Science:
- Cell Biology
- Cancer Research
- Molecular Biology
Background:
- Tumor cell dissemination depends on cell adhesion and migration, processes regulated by integrin endocytic trafficking.
- The prometastatic protein NEDD9's role in integrin trafficking and cell migration is not fully understood.
Purpose of the Study:
- To investigate the role of NEDD9 in the endocytic trafficking of integrins.
- To elucidate the mechanism by which NEDD9 influences breast cancer cell migration.
Main Methods:
- Depletion of NEDD9 in breast cancer cells.
- Analysis of integrin trafficking using microscopy and biochemical assays.
- Investigation of caveolin-1 (CAV1) phosphorylation and vesicle dynamics.
- Assessment of cell adhesion and migration.
Main Results:
- NEDD9 depletion impairs ligand-bound integrin trafficking, decreasing cell migration.
- NEDD9 deficiency enhances caveolae-dependent trafficking to early endosomes and increases CAV1 tyrosine phosphorylation.
- NEDD9 directly binds to CAV1, and its absence hinders integrin-ligand complex degradation and promotes integrin recycling.
- Restoring NEDD9 or reducing active CAV1 rescues integrin trafficking and cell migration.
Conclusions:
- NEDD9 is crucial for orchestrating ligand-bound integrin trafficking by modulating CAV1 activity.
- NEDD9 depletion represents a potential therapeutic strategy to reduce tumor cell dissemination.
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