CADM1 controls actin cytoskeleton assembly and regulates extracellular matrix adhesion in human mast cells.

CADM1 is a major receptor for the adhesion of mast cells (MCs) to fibroblasts, human airway smooth muscle cells (HASMCs) and neurons. It also regulates E-cadherin and alpha6beta4 integrin in other cell types. Here we investigated a role for CADM1 in MC adhesion to both cells and extracellular matrix...

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Main Authors: Elena P Moiseeva, Kees R Straatman, Mark L Leyland, Peter Bradding
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3899107?pdf=render
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spelling doaj-039276cf1e0b45c5b50eff3a9cc6a9782020-11-24T22:03:19ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8598010.1371/journal.pone.0085980CADM1 controls actin cytoskeleton assembly and regulates extracellular matrix adhesion in human mast cells.Elena P MoiseevaKees R StraatmanMark L LeylandPeter BraddingCADM1 is a major receptor for the adhesion of mast cells (MCs) to fibroblasts, human airway smooth muscle cells (HASMCs) and neurons. It also regulates E-cadherin and alpha6beta4 integrin in other cell types. Here we investigated a role for CADM1 in MC adhesion to both cells and extracellular matrix (ECM). Downregulation of CADM1 in the human MC line HMC-1 resulted not only in reduced adhesion to HASMCs, but also reduced adhesion to their ECM. Time-course studies in the presence of EDTA to inhibit integrins demonstrated that CADM1 provided fast initial adhesion to HASMCs and assisted with slower adhesion to ECM. CADM1 downregulation, but not antibody-dependent CADM1 inhibition, reduced MC adhesion to ECM, suggesting indirect regulation of ECM adhesion. To investigate potential mechanisms, phosphotyrosine signalling and polymerisation of actin filaments, essential for integrin-mediated adhesion, were examined. Modulation of CADM1 expression positively correlated with surface KIT levels and polymerisation of cortical F-actin in HMC-1 cells. It also influenced phosphotyrosine signalling and KIT tyrosine autophosphorylation. CADM1 accounted for 46% of surface KIT levels and 31% of F-actin in HMC-1 cells. CADM1 downregulation resulted in elongation of cortical actin filaments in both HMC-1 cells and human lung MCs and increased cell rigidity of HMC-1 cells. Collectively these data suggest that CADM1 is a key adhesion receptor, which regulates MC net adhesion, both directly through CADM1-dependent adhesion, and indirectly through the regulation of other adhesion receptors. The latter is likely to occur via docking of KIT and polymerisation of cortical F-actin. Here we propose a stepwise model of adhesion with CADM1 as a driving force for net MC adhesion.http://europepmc.org/articles/PMC3899107?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Elena P Moiseeva
Kees R Straatman
Mark L Leyland
Peter Bradding
spellingShingle Elena P Moiseeva
Kees R Straatman
Mark L Leyland
Peter Bradding
CADM1 controls actin cytoskeleton assembly and regulates extracellular matrix adhesion in human mast cells.
PLoS ONE
author_facet Elena P Moiseeva
Kees R Straatman
Mark L Leyland
Peter Bradding
author_sort Elena P Moiseeva
title CADM1 controls actin cytoskeleton assembly and regulates extracellular matrix adhesion in human mast cells.
title_short CADM1 controls actin cytoskeleton assembly and regulates extracellular matrix adhesion in human mast cells.
title_full CADM1 controls actin cytoskeleton assembly and regulates extracellular matrix adhesion in human mast cells.
title_fullStr CADM1 controls actin cytoskeleton assembly and regulates extracellular matrix adhesion in human mast cells.
title_full_unstemmed CADM1 controls actin cytoskeleton assembly and regulates extracellular matrix adhesion in human mast cells.
title_sort cadm1 controls actin cytoskeleton assembly and regulates extracellular matrix adhesion in human mast cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description CADM1 is a major receptor for the adhesion of mast cells (MCs) to fibroblasts, human airway smooth muscle cells (HASMCs) and neurons. It also regulates E-cadherin and alpha6beta4 integrin in other cell types. Here we investigated a role for CADM1 in MC adhesion to both cells and extracellular matrix (ECM). Downregulation of CADM1 in the human MC line HMC-1 resulted not only in reduced adhesion to HASMCs, but also reduced adhesion to their ECM. Time-course studies in the presence of EDTA to inhibit integrins demonstrated that CADM1 provided fast initial adhesion to HASMCs and assisted with slower adhesion to ECM. CADM1 downregulation, but not antibody-dependent CADM1 inhibition, reduced MC adhesion to ECM, suggesting indirect regulation of ECM adhesion. To investigate potential mechanisms, phosphotyrosine signalling and polymerisation of actin filaments, essential for integrin-mediated adhesion, were examined. Modulation of CADM1 expression positively correlated with surface KIT levels and polymerisation of cortical F-actin in HMC-1 cells. It also influenced phosphotyrosine signalling and KIT tyrosine autophosphorylation. CADM1 accounted for 46% of surface KIT levels and 31% of F-actin in HMC-1 cells. CADM1 downregulation resulted in elongation of cortical actin filaments in both HMC-1 cells and human lung MCs and increased cell rigidity of HMC-1 cells. Collectively these data suggest that CADM1 is a key adhesion receptor, which regulates MC net adhesion, both directly through CADM1-dependent adhesion, and indirectly through the regulation of other adhesion receptors. The latter is likely to occur via docking of KIT and polymerisation of cortical F-actin. Here we propose a stepwise model of adhesion with CADM1 as a driving force for net MC adhesion.
url http://europepmc.org/articles/PMC3899107?pdf=render
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