Literature DB >> 21486952

Actomyosin-generated tension controls the molecular kinetics of focal adhesions.

Haguy Wolfenson1, Alexander Bershadsky, Yoav I Henis, Benjamin Geiger.   

Abstract

Focal adhesions (FAs) have key roles in the interaction of cells with the extracellular matrix (ECM) and in adhesion-mediated signaling. These dynamic, multi-protein structures sense the ECM both chemically and physically, and respond to external and internal forces by changing their size and signaling activity. However, this mechanosensitivity is still poorly understood at the molecular level. Here, we present direct evidence that actomyosin contractility regulates the molecular kinetics of FAs. We show that the molecular turnover of proteins within FAs is primarily regulated by their dissociation rate constant (k(off)), which is sensitive to changes in forces applied to the FA. We measured the early changes in k(off) values for three FA proteins (vinculin, paxillin and zyxin) upon inhibition of actomyosin-generated forces using two methods - high temporal resolution FRAP and direct measurement of FA protein dissociation in permeabilized cells. When myosin II contractility was inhibited, the k(off) values for all three proteins changed rapidly, in a highly protein-specific manner: dissociation of vinculin from FAs was facilitated, whereas dissociation of paxillin and zyxin was attenuated. We hypothesize that these early kinetic changes initiate FA disassembly by affecting the molecular turnover of FAs and altering their composition.

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Year:  2011        PMID: 21486952      PMCID: PMC3078811          DOI: 10.1242/jcs.077388

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  51 in total

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Review 5.  The heel and toe of the cell's foot: a multifaceted approach for understanding the structure and dynamics of focal adhesions.

Authors:  Haguy Wolfenson; Yoav I Henis; Benjamin Geiger; Alexander D Bershadsky
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6.  Myosin II activity regulates vinculin recruitment to focal adhesions through FAK-mediated paxillin phosphorylation.

Authors:  Ana M Pasapera; Ian C Schneider; Erin Rericha; David D Schlaepfer; Clare M Waterman
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7.  Force loading explains spatial sensing of ligands by cells.

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9.  A helping hand: How vinculin contributes to cell-matrix and cell-cell force transfer.

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10.  ARAP2 inhibits Akt independently of its effects on focal adhesions.

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