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Extracellular Redox Regulation of α7β Integrin-Mediated Cell Migration Is Signaled via a Dominant Thiol-Switch

While adhering to extracellular matrix (ECM) proteins, such as laminin-111, cells temporarily produce hydrogen peroxide at adhesion sites. To study the redox regulation of α7β1 integrin-mediated cell adhesion to laminin-111, a conserved cysteine pair within the α-subunit hinge region was replaced fo...

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Autores principales: Bergerhausen, Lukas, Grosche, Julius, Meißner, Juliane, Hecker, Christina, Caliandro, Michele F., Westerhausen, Christoph, Kamenac, Andrej, Rezaei, Maryam, Mörgelin, Matthias, Poschmann, Gereon, Vestweber, Dietmar, Hanschmann, Eva-Maria, Eble, Johannes A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7139957/
https://www.ncbi.nlm.nih.gov/pubmed/32164274
http://dx.doi.org/10.3390/antiox9030227
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author Bergerhausen, Lukas
Grosche, Julius
Meißner, Juliane
Hecker, Christina
Caliandro, Michele F.
Westerhausen, Christoph
Kamenac, Andrej
Rezaei, Maryam
Mörgelin, Matthias
Poschmann, Gereon
Vestweber, Dietmar
Hanschmann, Eva-Maria
Eble, Johannes A.
author_facet Bergerhausen, Lukas
Grosche, Julius
Meißner, Juliane
Hecker, Christina
Caliandro, Michele F.
Westerhausen, Christoph
Kamenac, Andrej
Rezaei, Maryam
Mörgelin, Matthias
Poschmann, Gereon
Vestweber, Dietmar
Hanschmann, Eva-Maria
Eble, Johannes A.
author_sort Bergerhausen, Lukas
collection PubMed
description While adhering to extracellular matrix (ECM) proteins, such as laminin-111, cells temporarily produce hydrogen peroxide at adhesion sites. To study the redox regulation of α7β1 integrin-mediated cell adhesion to laminin-111, a conserved cysteine pair within the α-subunit hinge region was replaced for alanines. The molecular and cellular effects were analyzed by electron and atomic force microscopy, impedance-based migration assays, flow cytometry and live cell imaging. This cysteine pair constitutes a thiol-switch, which redox-dependently governs the equilibrium between an extended and a bent integrin conformation with high and low ligand binding activity, respectively. Hydrogen peroxide oxidizes the cysteines to a disulfide bond, increases ligand binding and promotes cell migration toward laminin-111. Inversely, extracellular thioredoxin-1 reduces the disulfide, thereby decreasing laminin binding. Mutation of this cysteine pair into the non-oxidizable hinge-mutant shows molecular and cellular effects similar to the reduced wild-type integrin, but lacks redox regulation. This proves the existence of a dominant thiol-switch within the α subunit hinge of α7β1 integrin, which is sufficient to implement activity regulation by extracellular redox agents in a redox-regulatory circuit. Our data reveal a novel and physiologically relevant thiol-based regulatory mechanism of integrin-mediated cell-ECM interactions, which employs short-lived hydrogen peroxide and extracellular thioredoxin-1 as signaling mediators.
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spelling pubmed-71399572020-04-13 Extracellular Redox Regulation of α7β Integrin-Mediated Cell Migration Is Signaled via a Dominant Thiol-Switch Bergerhausen, Lukas Grosche, Julius Meißner, Juliane Hecker, Christina Caliandro, Michele F. Westerhausen, Christoph Kamenac, Andrej Rezaei, Maryam Mörgelin, Matthias Poschmann, Gereon Vestweber, Dietmar Hanschmann, Eva-Maria Eble, Johannes A. Antioxidants (Basel) Article While adhering to extracellular matrix (ECM) proteins, such as laminin-111, cells temporarily produce hydrogen peroxide at adhesion sites. To study the redox regulation of α7β1 integrin-mediated cell adhesion to laminin-111, a conserved cysteine pair within the α-subunit hinge region was replaced for alanines. The molecular and cellular effects were analyzed by electron and atomic force microscopy, impedance-based migration assays, flow cytometry and live cell imaging. This cysteine pair constitutes a thiol-switch, which redox-dependently governs the equilibrium between an extended and a bent integrin conformation with high and low ligand binding activity, respectively. Hydrogen peroxide oxidizes the cysteines to a disulfide bond, increases ligand binding and promotes cell migration toward laminin-111. Inversely, extracellular thioredoxin-1 reduces the disulfide, thereby decreasing laminin binding. Mutation of this cysteine pair into the non-oxidizable hinge-mutant shows molecular and cellular effects similar to the reduced wild-type integrin, but lacks redox regulation. This proves the existence of a dominant thiol-switch within the α subunit hinge of α7β1 integrin, which is sufficient to implement activity regulation by extracellular redox agents in a redox-regulatory circuit. Our data reveal a novel and physiologically relevant thiol-based regulatory mechanism of integrin-mediated cell-ECM interactions, which employs short-lived hydrogen peroxide and extracellular thioredoxin-1 as signaling mediators. MDPI 2020-03-10 /pmc/articles/PMC7139957/ /pubmed/32164274 http://dx.doi.org/10.3390/antiox9030227 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bergerhausen, Lukas
Grosche, Julius
Meißner, Juliane
Hecker, Christina
Caliandro, Michele F.
Westerhausen, Christoph
Kamenac, Andrej
Rezaei, Maryam
Mörgelin, Matthias
Poschmann, Gereon
Vestweber, Dietmar
Hanschmann, Eva-Maria
Eble, Johannes A.
Extracellular Redox Regulation of α7β Integrin-Mediated Cell Migration Is Signaled via a Dominant Thiol-Switch
title Extracellular Redox Regulation of α7β Integrin-Mediated Cell Migration Is Signaled via a Dominant Thiol-Switch
title_full Extracellular Redox Regulation of α7β Integrin-Mediated Cell Migration Is Signaled via a Dominant Thiol-Switch
title_fullStr Extracellular Redox Regulation of α7β Integrin-Mediated Cell Migration Is Signaled via a Dominant Thiol-Switch
title_full_unstemmed Extracellular Redox Regulation of α7β Integrin-Mediated Cell Migration Is Signaled via a Dominant Thiol-Switch
title_short Extracellular Redox Regulation of α7β Integrin-Mediated Cell Migration Is Signaled via a Dominant Thiol-Switch
title_sort extracellular redox regulation of α7β integrin-mediated cell migration is signaled via a dominant thiol-switch
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7139957/
https://www.ncbi.nlm.nih.gov/pubmed/32164274
http://dx.doi.org/10.3390/antiox9030227
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