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Crosstalk between Cell Adhesion Complexes in Regulation of Mechanotransduction.

Alba Zuidema ,
Wei Wang ,
Arnoud Sonnenberg

Abstract

Physical forces regulate numerous biological processes during development, physiology, and pathology. Forces between the external environment and intracellular actin cytoskeleton are primarily transmitted through integrin-containing focal adhesions and cadherin-containing adherens junctions. Crosstalk between these complexes is well established and modulates the mechanical landscape of the cell. However, integrins and cadherins constitute large families of adhesion receptors and form multiple complexes by interacting with different ligands, adaptor proteins, and cytoskeletal filaments. Recent findings indicate that integrin-containing hemidesmosomes oppose force transduction and traction force generation by focal adhesions. The cytolinker plectin mediates this crosstalk by coupling intermediate filaments to the actin cytoskeleton. Similarly, cadherins in desmosomes might modulate force generation by adherens junctions. Moreover, mechanotransduction can be influenced by podosomes, clathrin lattices, and tetraspanin-enriched microdomains. This review discusses mechanotransduction by multiple integrin- and cadherin-based cell adhesion complexes, which together with the associated cytoskeleton form an integrated network that allows cells to sense, process, and respond to their physical environment.

More about this publication

BioEssays : news and reviews in molecular, cellular and developmental biology

Volume 42
Issue nr. 11
Pages e2000119
Publication date 01-11-2020

Full text links

Publisher website (DOI) 10.1002/bies.202000119
Europe PubMed Central 32830356
Pubmed 32830356

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