Dystroglycan, Tks5 and Src mediated assembly of podosomes in myoblasts.

Dystroglycan is a ubiquitously expressed cell adhesion receptor best understood in its role as part of the dystrophin glycoprotein complex of mature skeletal muscle. Less is known of the role of dystroglycan in more fundamental aspects of cell adhesion in other cell types, nor of its role in myoblas...

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Main Authors: Oliver Thompson, Iivari Kleino, Luca Crimaldi, Mario Gimona, Kalle Saksela, Steve J Winder
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2572840?pdf=render
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spelling doaj-d6ea012f6bdb44cdb80215c098513eaa2020-11-25T01:14:11ZengPublic Library of Science (PLoS)PLoS ONE1932-62032008-01-01311e363810.1371/journal.pone.0003638Dystroglycan, Tks5 and Src mediated assembly of podosomes in myoblasts.Oliver ThompsonIivari KleinoLuca CrimaldiMario GimonaKalle SakselaSteve J WinderDystroglycan is a ubiquitously expressed cell adhesion receptor best understood in its role as part of the dystrophin glycoprotein complex of mature skeletal muscle. Less is known of the role of dystroglycan in more fundamental aspects of cell adhesion in other cell types, nor of its role in myoblast cell adhesion.We have examined the role of dystroglycan in the early stages of myoblast adhesion and spreading and found that dystroglycan initially associates with other adhesion proteins in large puncta morphologically similar to podosomes. Using a human SH3 domain phage display library we identified Tks5, a key regulator of podosomes, as interacting with beta-dystroglycan. We verified the interaction by immunoprecipitation, GST-pulldown and immunfluorescence localisation. Both proteins localise to puncta during early phases of spreading, but importantly following stimulation with phorbol ester, also localise to structures indistinguishable from podosomes. Dystroglycan overexpression inhibited podosome formation by sequestering Tks5 and Src. Mutation of dystroglycan tyrosine 890, previously identified as a Src substrate, restored podosome formation.We propose therefore, that Src-dependent phosphorylation of beta-dystroglycan results in the formation of a Src/dystroglycan complex that drives the SH3-mediated association between dystroglycan and Tks5 which together regulate podosome formation in myoblasts.http://europepmc.org/articles/PMC2572840?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Oliver Thompson
Iivari Kleino
Luca Crimaldi
Mario Gimona
Kalle Saksela
Steve J Winder
spellingShingle Oliver Thompson
Iivari Kleino
Luca Crimaldi
Mario Gimona
Kalle Saksela
Steve J Winder
Dystroglycan, Tks5 and Src mediated assembly of podosomes in myoblasts.
PLoS ONE
author_facet Oliver Thompson
Iivari Kleino
Luca Crimaldi
Mario Gimona
Kalle Saksela
Steve J Winder
author_sort Oliver Thompson
title Dystroglycan, Tks5 and Src mediated assembly of podosomes in myoblasts.
title_short Dystroglycan, Tks5 and Src mediated assembly of podosomes in myoblasts.
title_full Dystroglycan, Tks5 and Src mediated assembly of podosomes in myoblasts.
title_fullStr Dystroglycan, Tks5 and Src mediated assembly of podosomes in myoblasts.
title_full_unstemmed Dystroglycan, Tks5 and Src mediated assembly of podosomes in myoblasts.
title_sort dystroglycan, tks5 and src mediated assembly of podosomes in myoblasts.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2008-01-01
description Dystroglycan is a ubiquitously expressed cell adhesion receptor best understood in its role as part of the dystrophin glycoprotein complex of mature skeletal muscle. Less is known of the role of dystroglycan in more fundamental aspects of cell adhesion in other cell types, nor of its role in myoblast cell adhesion.We have examined the role of dystroglycan in the early stages of myoblast adhesion and spreading and found that dystroglycan initially associates with other adhesion proteins in large puncta morphologically similar to podosomes. Using a human SH3 domain phage display library we identified Tks5, a key regulator of podosomes, as interacting with beta-dystroglycan. We verified the interaction by immunoprecipitation, GST-pulldown and immunfluorescence localisation. Both proteins localise to puncta during early phases of spreading, but importantly following stimulation with phorbol ester, also localise to structures indistinguishable from podosomes. Dystroglycan overexpression inhibited podosome formation by sequestering Tks5 and Src. Mutation of dystroglycan tyrosine 890, previously identified as a Src substrate, restored podosome formation.We propose therefore, that Src-dependent phosphorylation of beta-dystroglycan results in the formation of a Src/dystroglycan complex that drives the SH3-mediated association between dystroglycan and Tks5 which together regulate podosome formation in myoblasts.
url http://europepmc.org/articles/PMC2572840?pdf=render
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