4.7 Article

Cell Density Sensing Alters TGF-β Signaling in a Cell-Type-Specific Manner, Independent from Hippo Pathway Activation

Journal

DEVELOPMENTAL CELL
Volume 32, Issue 5, Pages 640-651

Publisher

CELL PRESS
DOI: 10.1016/j.devcel.2015.01.011

Keywords

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Funding

  1. Donation Henriette et Emile Goutiere, Institut National du Cancer (INCa) [PLBIO12-020, MELA13-002]
  2. INSERM
  3. CNRS
  4. Ligue Nationale Contre le Cancer (Comite de la Manche, Equipe Labellisee LIGUE) [EL-2011AM]
  5. Universite Paris XI
  6. France-Berkeley Fund
  7. Public Health Service Grants from the National Institute of General Medical Sciences [GM-54200, GM-55816]
  8. Mayo Foundation
  9. Ligue Nationale Contre le Cancer doctoral studentship

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Cell-cell contacts inhibit cell growth and proliferation in part by activating the Hippo pathway that drives the phosphorylation and nuclear exclusion of the transcriptional coactivators YAP and TAZ. Cell density and Hippo signaling have also been reported to block transforming growth factor beta (TGF-beta) responses, based on the ability of phospho-YAP/TAZ to sequester TGF-beta-activated SMAD complexes in the cytoplasm. Herein, we provide evidence that epithelial cell polarization interferes with TGF-beta signaling well upstream and independent of cytoplasmic YAP/TAZ. Rather, polarized basolateral presentation of TGF-beta receptors I and II deprives apically delivered TGF-beta of access to its receptors. Basolateral ligand delivery nonetheless remains entirely effective to induce TGF-beta responses. These data demonstrate that cell-type-specific inhibition of TGF-beta signaling by cell density is restricted to polarized epithelial cells and reflects the polarized distribution of TGF-beta receptors, which thus affects SMAD activation irrespective of Hippo pathway activation.

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