Literature DB >> 21383129

Cell-ECM traction force modulates endogenous tension at cell-cell contacts.

Venkat Maruthamuthu1, Benedikt Sabass, Ulrich S Schwarz, Margaret L Gardel.   

Abstract

Cells in tissues are mechanically coupled both to the ECM and neighboring cells, but the coordination and interdependency of forces sustained at cell-ECM and cell-cell adhesions are unknown. In this paper, we demonstrate that the endogenous force sustained at the cell-cell contact between a pair of epithelial cells is approximately 100 nN, directed perpendicular to the cell-cell interface and concentrated at the contact edges. This force is stably maintained over time despite significant fluctuations in cell-cell contact length and cell morphology. A direct relationship between the total cellular traction force on the ECM and the endogenous cell-cell force exists, indicating that the cell-cell tension is a constant fraction of the cell-ECM traction. Thus, modulation of ECM properties that impact cell-ECM traction alters cell-cell tension. Finally, we show in a minimal model of a tissue that all cells experience similar forces from the surrounding microenvironment, despite differences in the extent of cell-ECM and cell-cell adhesion. This interdependence of cell-cell and cell-ECM forces has significant implications for the maintenance of the mechanical integrity of tissues, mechanotransduction, and tumor mechanobiology.

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Year:  2011        PMID: 21383129      PMCID: PMC3064395          DOI: 10.1073/pnas.1011123108

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  28 in total

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7.  Mechanisms of epithelial cell-cell adhesion and cell compaction revealed by high-resolution tracking of E-cadherin-green fluorescent protein.

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  210 in total

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Review 7.  Review of cellular mechanotransduction on micropost substrates.

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9.  Protrusive activity guides changes in cell-cell tension during epithelial cell scattering.

Authors:  Venkat Maruthamuthu; Margaret L Gardel
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