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Keratins Regulate p38MAPK-Dependent Desmoglein Binding Properties in Pemphigus

Keratins are crucial for the anchorage of desmosomes. Severe alterations of keratin organization and detachment of filaments from the desmosomal plaque occur in the autoimmune dermatoses pemphigus vulgaris and pemphigus foliaceus (PF), which are mainly caused by autoantibodies against desmoglein (Ds...

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Autores principales: Vielmuth, Franziska, Walter, Elias, Fuchs, Michael, Radeva, Mariya Y., Buechau, Fanny, Magin, Thomas M., Spindler, Volker, Waschke, Jens
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5868517/
https://www.ncbi.nlm.nih.gov/pubmed/29616033
http://dx.doi.org/10.3389/fimmu.2018.00528
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author Vielmuth, Franziska
Walter, Elias
Fuchs, Michael
Radeva, Mariya Y.
Buechau, Fanny
Magin, Thomas M.
Spindler, Volker
Waschke, Jens
author_facet Vielmuth, Franziska
Walter, Elias
Fuchs, Michael
Radeva, Mariya Y.
Buechau, Fanny
Magin, Thomas M.
Spindler, Volker
Waschke, Jens
author_sort Vielmuth, Franziska
collection PubMed
description Keratins are crucial for the anchorage of desmosomes. Severe alterations of keratin organization and detachment of filaments from the desmosomal plaque occur in the autoimmune dermatoses pemphigus vulgaris and pemphigus foliaceus (PF), which are mainly caused by autoantibodies against desmoglein (Dsg) 1 and 3. Keratin alterations are a structural hallmark in pemphigus pathogenesis and correlate with loss of intercellular adhesion. However, the significance for autoantibody-induced loss of intercellular adhesion is largely unknown. In wild-type (wt) murine keratinocytes, pemphigus autoantibodies induced keratin filament retraction. Under the same conditions, we used murine keratinocytes lacking all keratin filaments (KtyII k.o.) as a model system to dissect the role of keratins in pemphigus. KtyII k.o. cells show compromised intercellular adhesion without antibody (Ab) treatment, which was not impaired further by pathogenic pemphigus autoantibodies. Nevertheless, direct activation of p38MAPK via anisomycin further decreased intercellular adhesion indicating that cell cohesion was not completely abrogated in the absence of keratins. Direct inhibition of Dsg3, but not of Dsg1, interaction via pathogenic autoantibodies as revealed by atomic force microscopy was detectable in both cell lines demonstrating that keratins are not required for this phenomenon. However, PF-IgG shifted Dsg1-binding events from cell borders toward the free cell surface in wt cells. This led to a distribution pattern of Dsg1-binding events similar to KtyII k.o. cells under resting conditions. In keratin-deficient keratinocytes, PF-IgG impaired Dsg1-binding strength, which was not different from wt cells under resting conditions. In addition, pathogenic autoantibodies were capable of activating p38MAPK in both KtyII wt and k.o. cells, the latter of which already displayed robust p38MAPK activation under resting conditions. Since inhibition of p38MAPK blocked autoantibody-induced loss of intercellular adhesion in wt cells and restored baseline cell cohesion in keratin-deficient cells, we conclude that p38MAPK signaling is (i) critical for regulation of cell adhesion, (ii) regulated by keratins, and (iii) targets both keratin-dependent and -independent mechanisms.
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spelling pubmed-58685172018-04-03 Keratins Regulate p38MAPK-Dependent Desmoglein Binding Properties in Pemphigus Vielmuth, Franziska Walter, Elias Fuchs, Michael Radeva, Mariya Y. Buechau, Fanny Magin, Thomas M. Spindler, Volker Waschke, Jens Front Immunol Immunology Keratins are crucial for the anchorage of desmosomes. Severe alterations of keratin organization and detachment of filaments from the desmosomal plaque occur in the autoimmune dermatoses pemphigus vulgaris and pemphigus foliaceus (PF), which are mainly caused by autoantibodies against desmoglein (Dsg) 1 and 3. Keratin alterations are a structural hallmark in pemphigus pathogenesis and correlate with loss of intercellular adhesion. However, the significance for autoantibody-induced loss of intercellular adhesion is largely unknown. In wild-type (wt) murine keratinocytes, pemphigus autoantibodies induced keratin filament retraction. Under the same conditions, we used murine keratinocytes lacking all keratin filaments (KtyII k.o.) as a model system to dissect the role of keratins in pemphigus. KtyII k.o. cells show compromised intercellular adhesion without antibody (Ab) treatment, which was not impaired further by pathogenic pemphigus autoantibodies. Nevertheless, direct activation of p38MAPK via anisomycin further decreased intercellular adhesion indicating that cell cohesion was not completely abrogated in the absence of keratins. Direct inhibition of Dsg3, but not of Dsg1, interaction via pathogenic autoantibodies as revealed by atomic force microscopy was detectable in both cell lines demonstrating that keratins are not required for this phenomenon. However, PF-IgG shifted Dsg1-binding events from cell borders toward the free cell surface in wt cells. This led to a distribution pattern of Dsg1-binding events similar to KtyII k.o. cells under resting conditions. In keratin-deficient keratinocytes, PF-IgG impaired Dsg1-binding strength, which was not different from wt cells under resting conditions. In addition, pathogenic autoantibodies were capable of activating p38MAPK in both KtyII wt and k.o. cells, the latter of which already displayed robust p38MAPK activation under resting conditions. Since inhibition of p38MAPK blocked autoantibody-induced loss of intercellular adhesion in wt cells and restored baseline cell cohesion in keratin-deficient cells, we conclude that p38MAPK signaling is (i) critical for regulation of cell adhesion, (ii) regulated by keratins, and (iii) targets both keratin-dependent and -independent mechanisms. Frontiers Media S.A. 2018-03-19 /pmc/articles/PMC5868517/ /pubmed/29616033 http://dx.doi.org/10.3389/fimmu.2018.00528 Text en Copyright © 2018 Vielmuth, Walter, Fuchs, Radeva, Buechau, Magin, Spindler and Waschke. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Vielmuth, Franziska
Walter, Elias
Fuchs, Michael
Radeva, Mariya Y.
Buechau, Fanny
Magin, Thomas M.
Spindler, Volker
Waschke, Jens
Keratins Regulate p38MAPK-Dependent Desmoglein Binding Properties in Pemphigus
title Keratins Regulate p38MAPK-Dependent Desmoglein Binding Properties in Pemphigus
title_full Keratins Regulate p38MAPK-Dependent Desmoglein Binding Properties in Pemphigus
title_fullStr Keratins Regulate p38MAPK-Dependent Desmoglein Binding Properties in Pemphigus
title_full_unstemmed Keratins Regulate p38MAPK-Dependent Desmoglein Binding Properties in Pemphigus
title_short Keratins Regulate p38MAPK-Dependent Desmoglein Binding Properties in Pemphigus
title_sort keratins regulate p38mapk-dependent desmoglein binding properties in pemphigus
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5868517/
https://www.ncbi.nlm.nih.gov/pubmed/29616033
http://dx.doi.org/10.3389/fimmu.2018.00528
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