N-cadherin expression level modulates integrin-mediated polarity and strongly impacts on the speed and directionality of glial cell migration

Author:

Camand Emeline1,Peglion Florent1,Osmani Naël1,Sanson Marc23,Etienne-Manneville Sandrine1

Affiliation:

1. Institut Pasteur–CNRS URA 2582, Cell Polarity, Migration and Cancer Unit, 25 rue du Dr Roux, 75724 Paris CEDEX 15, France

2. UMR975, Hôpital de la Salpêtrière, Université Pierre et Marie Curie, Paris, 75013 France

3. Service de Neurologie Mazarin, Hôpital de la Salpêtrière, Paris, 75013 France

Abstract

Perturbation of cell polarity is a hallmark of cancer cells. In carcinomas, loss of epithelial E-cadherin contributes to the loss of cell polarity and promotes epithelial–mesenchymal transition and carcinoma infiltration. However, the contribution of classical cadherins to the development of non-epithelial tumours is less well documented. We investigated the impact of the level of N-cadherin expression on the polarity and migration of normal and tumour glial cells. Low levels of N-cadherin were frequently observed in human glioma samples and purified glioma cells. Using a wound-healing assay, we show that a decreased level of N-cadherin promotes a faster and less-directed migration both in normal and tumour cells. N-cadherin-mediated contacts control cell velocity and polarity through the regulation of focal adhesions. In cells expressing low levels of N-cadherin, small focal adhesions are present at the entire cell periphery of confluent cells and are not affected by wounding of the cell monolayer. Under these conditions, wound-induced integrin-mediated recruitment of the small GTPase Cdc42, activation of the Cdc42-mediated polarity pathway and centrosome reorientation do not occur. Re-expression of N-cadherin in gliomas restores cell polarity and strongly reduces cell velocity, suggesting that loss of N-cadherin could contribute to the invasive capacity of tumour astrocytes.

Publisher

The Company of Biologists

Subject

Cell Biology

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