4.7 Article

Classical cadherins control nucleus and centrosome position and cell polarity

Journal

JOURNAL OF CELL BIOLOGY
Volume 185, Issue 5, Pages 779-786

Publisher

ROCKEFELLER UNIV PRESS
DOI: 10.1083/jcb.200812034

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Funding

  1. Centre National de la Recherche Scientifique [53/0281]
  2. Institut Pasteur, the Fondation de France [200510057]
  3. Ministere de la Recherche
  4. Association pour la recherche contre le Cancer
  5. Schlumberger foundation
  6. Institut Pasteur
  7. Fondation de France [200510057]
  8. Institut pour la Recherche sur la Moelle epineiere et l'Encephale, Agence Nationale de la Recherche [032312]
  9. La Ligue contre le Cancer [07/75-31]

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Control of cell polarity is crucial during tissue morphogenesis and renewal, and depends on spatial cues provided by the extracellular environment. Using micropatterned substrates to impose reproducible cell-cell interactions, we show that in the absence of other polarizing cues, cell-cell contacts are the main regulator of nucleus and centrosome positioning, and intracellular polarized organization. In a variety of cell types, including astrocytes, epithelial cells, and endothelial cells, calcium-dependent cadherin-mediated cell-cell interactions induce nucleus and centrosome off-centering toward cell-cell contacts, and promote orientation of the nucleus-centrosome axis toward free cell edges. Nucleus and centrosome off-centering is controlled by N-cadherin through the regulation of cell interactions with the extracellular matrix, whereas the orientation of the nucleus-centrosome axis is determined by the geometry of N-cadherin-mediated contacts. Our results demonstrate that in addition to the specific function of E-cadherin in regulating baso-apical epithelial polarity, classical cadherins control cell polarization in otherwise nonpolarized cells.

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