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Linking Integrin α(6)β(4)-based Cell Adhesion to the Intermediate Filament Cytoskeleton: Direct Interaction between the β(4) Subunit and Plectin at Multiple Molecular Sites

Recent studies with patients suffering from epidermolysis bullosa simplex associated with muscular dystrophy and the targeted gene disruption in mice suggested that plectin, a versatile cytoskeletal linker and intermediate filament-binding protein, may play an essential role in hemidesmosome integri...

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Autores principales: Rezniczek, Günther A., de Pereda, José M., Reipert, Siegfried, Wiche, Gerhard
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1998
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2132717/
https://www.ncbi.nlm.nih.gov/pubmed/9531560
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author Rezniczek, Günther A.
de Pereda, José M.
Reipert, Siegfried
Wiche, Gerhard
author_facet Rezniczek, Günther A.
de Pereda, José M.
Reipert, Siegfried
Wiche, Gerhard
author_sort Rezniczek, Günther A.
collection PubMed
description Recent studies with patients suffering from epidermolysis bullosa simplex associated with muscular dystrophy and the targeted gene disruption in mice suggested that plectin, a versatile cytoskeletal linker and intermediate filament-binding protein, may play an essential role in hemidesmosome integrity and stabilization. To define plectin's interactions with hemidesmosomal proteins on the molecular level, we studied its interaction with the uniquely long cytoplasmic tail domain of the β(4) subunit of the basement membrane laminin receptor integrin α(6)β(4) that has been implicated in connecting the transmembrane integrin complex with hemidesmosome-anchored cytokeratin filaments. In vitro binding and in vivo cotransfection assays, using recombinant mutant forms of both proteins, revealed their direct interaction via multiple molecular domains. Furthermore, we show in vitro self-interaction of integrin β(4) cytoplasmic domains, as well as disruption of intermediate filament network arrays and dislocation of hemidesmosome-associated endogenous plectin upon ectopic overexpression of this domain in PtK2 and/or 804G cells. The close association of plectin molecules with hemidesmosomal structures and their apparent random orientation was indicated by gold immunoelectron microscopy using domain-specific antibodies. Our data support a model in which plectin stabilizes hemidesmosomes, via directly interlinking integrin β(4) subunits and cytokeratin filaments.
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spelling pubmed-21327172008-05-01 Linking Integrin α(6)β(4)-based Cell Adhesion to the Intermediate Filament Cytoskeleton: Direct Interaction between the β(4) Subunit and Plectin at Multiple Molecular Sites Rezniczek, Günther A. de Pereda, José M. Reipert, Siegfried Wiche, Gerhard J Cell Biol Regular Articles Recent studies with patients suffering from epidermolysis bullosa simplex associated with muscular dystrophy and the targeted gene disruption in mice suggested that plectin, a versatile cytoskeletal linker and intermediate filament-binding protein, may play an essential role in hemidesmosome integrity and stabilization. To define plectin's interactions with hemidesmosomal proteins on the molecular level, we studied its interaction with the uniquely long cytoplasmic tail domain of the β(4) subunit of the basement membrane laminin receptor integrin α(6)β(4) that has been implicated in connecting the transmembrane integrin complex with hemidesmosome-anchored cytokeratin filaments. In vitro binding and in vivo cotransfection assays, using recombinant mutant forms of both proteins, revealed their direct interaction via multiple molecular domains. Furthermore, we show in vitro self-interaction of integrin β(4) cytoplasmic domains, as well as disruption of intermediate filament network arrays and dislocation of hemidesmosome-associated endogenous plectin upon ectopic overexpression of this domain in PtK2 and/or 804G cells. The close association of plectin molecules with hemidesmosomal structures and their apparent random orientation was indicated by gold immunoelectron microscopy using domain-specific antibodies. Our data support a model in which plectin stabilizes hemidesmosomes, via directly interlinking integrin β(4) subunits and cytokeratin filaments. The Rockefeller University Press 1998-04-06 /pmc/articles/PMC2132717/ /pubmed/9531560 Text en This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Regular Articles
Rezniczek, Günther A.
de Pereda, José M.
Reipert, Siegfried
Wiche, Gerhard
Linking Integrin α(6)β(4)-based Cell Adhesion to the Intermediate Filament Cytoskeleton: Direct Interaction between the β(4) Subunit and Plectin at Multiple Molecular Sites
title Linking Integrin α(6)β(4)-based Cell Adhesion to the Intermediate Filament Cytoskeleton: Direct Interaction between the β(4) Subunit and Plectin at Multiple Molecular Sites
title_full Linking Integrin α(6)β(4)-based Cell Adhesion to the Intermediate Filament Cytoskeleton: Direct Interaction between the β(4) Subunit and Plectin at Multiple Molecular Sites
title_fullStr Linking Integrin α(6)β(4)-based Cell Adhesion to the Intermediate Filament Cytoskeleton: Direct Interaction between the β(4) Subunit and Plectin at Multiple Molecular Sites
title_full_unstemmed Linking Integrin α(6)β(4)-based Cell Adhesion to the Intermediate Filament Cytoskeleton: Direct Interaction between the β(4) Subunit and Plectin at Multiple Molecular Sites
title_short Linking Integrin α(6)β(4)-based Cell Adhesion to the Intermediate Filament Cytoskeleton: Direct Interaction between the β(4) Subunit and Plectin at Multiple Molecular Sites
title_sort linking integrin α(6)β(4)-based cell adhesion to the intermediate filament cytoskeleton: direct interaction between the β(4) subunit and plectin at multiple molecular sites
topic Regular Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2132717/
https://www.ncbi.nlm.nih.gov/pubmed/9531560
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