4.8 Article

Mapping the dynamics of force transduction at cell-cell junctions of epithelial clusters

Journal

ELIFE
Volume 3, Issue -, Pages -

Publisher

ELIFE SCIENCES PUBLICATIONS LTD
DOI: 10.7554/eLife.03282

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Funding

  1. Cell Migration Consortium [NIH GM064346]
  2. Breast Cancer Research Foundation
  3. Lee Jeans Foundation through the Entertainment Industry Foundation
  4. NIH [R01 GM071868]
  5. NIH Cell and Developmental Biology Training grant [GM07226]
  6. Deutsche Forschungsgemeinschaft fellowship [BE4547/1-1]

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Force transduction at cell-cell adhesions regulates tissue development, maintenance and adaptation. We developed computational and experimental approaches to quantify, with both subcellular and multi-cellular resolution, the dynamics of force transmission in cell clusters. Applying this technology to spontaneously-forming adherent epithelial cell clusters, we found that basal force fluctuations were coupled to E-cadherin localization at the level of individual cell-cell junctions. At the multi-cellular scale, cell-cell force exchange depended on the cell position within a cluster, and was adaptive to reconfigurations due to cell divisions or positional rearrangements. Importantly, force transmission through a cell required coordinated modulation of cell-matrix adhesion and actomyosin contractility in the cell and its neighbors. These data provide insights into mechanisms that could control mechanical stress homeostasis in dynamic epithelial tissues, and highlight our methods as a resource for the study of mechanotransduction in cell-cell adhesions.

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