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Proteomic analysis of α4β1 integrin adhesion complexes reveals α-subunit-dependent protein recruitment

Integrin adhesion receptors mediate cell–cell and cell–extracellular matrix interactions, which control cell morphology and migration, differentiation, and tissue integrity. Integrins recruit multimolecular adhesion complexes to their cytoplasmic domains, which provide structural and mechanosensitiv...

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Detalles Bibliográficos
Autores principales: Byron, Adam, Humphries, Jonathan D, Craig, Sue E, Knight, David, Humphries, Martin J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3472074/
https://www.ncbi.nlm.nih.gov/pubmed/22623428
http://dx.doi.org/10.1002/pmic.201100487
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author Byron, Adam
Humphries, Jonathan D
Craig, Sue E
Knight, David
Humphries, Martin J
author_facet Byron, Adam
Humphries, Jonathan D
Craig, Sue E
Knight, David
Humphries, Martin J
author_sort Byron, Adam
collection PubMed
description Integrin adhesion receptors mediate cell–cell and cell–extracellular matrix interactions, which control cell morphology and migration, differentiation, and tissue integrity. Integrins recruit multimolecular adhesion complexes to their cytoplasmic domains, which provide structural and mechanosensitive signaling connections between the extracellular and intracellular milieux. The different functions of specific integrin heterodimers, such as α4β1 and α5β1, have been attributed to distinct signal transduction mechanisms that are initiated by selective recruitment of adhesion complex components to integrin cytoplasmic tails. Here, we report the isolation of ligand-induced adhesion complexes associated with wild-type α4β1 integrin, an activated α4β1 variant in the absence of the α cytoplasmic domain (X4C0), and a chimeric α4β1 variant with α5 leg and cytoplasmic domains (α4Pα5L), and the cataloguing of their proteomes by MS. Using hierarchical clustering and interaction network analyses, we detail the differential recruitment of proteins and highlight enrichment patterns of proteins to distinct adhesion complexes. We identify previously unreported components of integrin adhesion complexes and observe receptor-specific enrichment of molecules with previously reported links to cell migration and cell signaling processes. Furthermore, we demonstrate colocalization of MYO18A with active integrin in migrating cells. These datasets provide a resource for future studies of integrin receptor-specific signaling events.
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spelling pubmed-34720742012-10-18 Proteomic analysis of α4β1 integrin adhesion complexes reveals α-subunit-dependent protein recruitment Byron, Adam Humphries, Jonathan D Craig, Sue E Knight, David Humphries, Martin J Proteomics Model Systems Integrin adhesion receptors mediate cell–cell and cell–extracellular matrix interactions, which control cell morphology and migration, differentiation, and tissue integrity. Integrins recruit multimolecular adhesion complexes to their cytoplasmic domains, which provide structural and mechanosensitive signaling connections between the extracellular and intracellular milieux. The different functions of specific integrin heterodimers, such as α4β1 and α5β1, have been attributed to distinct signal transduction mechanisms that are initiated by selective recruitment of adhesion complex components to integrin cytoplasmic tails. Here, we report the isolation of ligand-induced adhesion complexes associated with wild-type α4β1 integrin, an activated α4β1 variant in the absence of the α cytoplasmic domain (X4C0), and a chimeric α4β1 variant with α5 leg and cytoplasmic domains (α4Pα5L), and the cataloguing of their proteomes by MS. Using hierarchical clustering and interaction network analyses, we detail the differential recruitment of proteins and highlight enrichment patterns of proteins to distinct adhesion complexes. We identify previously unreported components of integrin adhesion complexes and observe receptor-specific enrichment of molecules with previously reported links to cell migration and cell signaling processes. Furthermore, we demonstrate colocalization of MYO18A with active integrin in migrating cells. These datasets provide a resource for future studies of integrin receptor-specific signaling events. Blackwell Publishing Ltd 2012-07 2012-07-17 /pmc/articles/PMC3472074/ /pubmed/22623428 http://dx.doi.org/10.1002/pmic.201100487 Text en © 2012 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Model Systems
Byron, Adam
Humphries, Jonathan D
Craig, Sue E
Knight, David
Humphries, Martin J
Proteomic analysis of α4β1 integrin adhesion complexes reveals α-subunit-dependent protein recruitment
title Proteomic analysis of α4β1 integrin adhesion complexes reveals α-subunit-dependent protein recruitment
title_full Proteomic analysis of α4β1 integrin adhesion complexes reveals α-subunit-dependent protein recruitment
title_fullStr Proteomic analysis of α4β1 integrin adhesion complexes reveals α-subunit-dependent protein recruitment
title_full_unstemmed Proteomic analysis of α4β1 integrin adhesion complexes reveals α-subunit-dependent protein recruitment
title_short Proteomic analysis of α4β1 integrin adhesion complexes reveals α-subunit-dependent protein recruitment
title_sort proteomic analysis of α4β1 integrin adhesion complexes reveals α-subunit-dependent protein recruitment
topic Model Systems
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3472074/
https://www.ncbi.nlm.nih.gov/pubmed/22623428
http://dx.doi.org/10.1002/pmic.201100487
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