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  4. Fibrogenic fibroblasts increase intercellular adhesion strength by reinforcing individual OB-cadherin bonds
 
research article

Fibrogenic fibroblasts increase intercellular adhesion strength by reinforcing individual OB-cadherin bonds

Pittet, Philippe  
•
Lee, Kyumin  
•
Kulik, Andrzej J.  
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2008
Journal of Cell Science

We have previously shown that the switch from N-cadherin to OB-cadherin expression increases intercellular adhesion between fibroblasts during their transition from a migratory to a fibrogenic phenotype. Using atomic force microscopy we here show that part of this stronger adhesion is accomplished because OB-cadherin bonds resist similar to twofold higher forces compared with N-cadherin junctions. By assessing the adhesion force between recombinant cadherin dimers and between native cadherins in the membrane of spread fibroblasts, we demonstrate that cadherin bonds are reinforced over time with two distinct force increments. By modulating the degree of lateral cadherin diffusion and F-actin organization we can attribute the resulting three force states to the single-molecule bond rather than to cadherin cluster formation. Notably, association with actin filaments enhances cadherin adhesion strength on the single-molecule level up to threefold; actin depolymerization reduces single-bond strength to the level of cadherin constructs missing the cytoplasmic domain. Hence, fibroblasts reinforce intercellular contacts by: (1) switching from N- to OB-cadherin expression; (2) increasing the strength of single-molecule bonds in three distinct steps; and (3) actin-promoted intrinsic activation of cadherin extracellular binding. We propose that this plasticity adapts fibroblast adhesions to the changing mechanical microenvironment of tissue under remodeling.

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Type
research article
DOI
10.1242/jcs.024877
Web of Science ID

WOS:000254660200016

Author(s)
Pittet, Philippe  
Lee, Kyumin  
Kulik, Andrzej J.  
Meister, Jean-Jacques  
Hinz, Boris
Date Issued

2008

Published in
Journal of Cell Science
Volume

121

Issue

6

Start page

877

End page

886

Subjects

atomic force microscopy

•

myofibroblast

•

N-cadherin

•

OB-cadherin

•

cytoskeleton

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LNNME  
LCB  
Available on Infoscience
May 21, 2008
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/25860
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