Cargando…

ZO-1 Guides Tight Junction Assembly and Epithelial Morphogenesis via Cytoskeletal Tension-Dependent and -Independent Functions

Formation and maintenance of tissue barriers require the coordination of cell mechanics and cell–cell junction assembly. Here, we combined methods to modulate ECM stiffness and to measure mechanical forces on adhesion complexes to investigate how tight junctions regulate cell mechanics and epithelia...

Descripción completa

Detalles Bibliográficos
Autores principales: Haas, Alexis J., Zihni, Ceniz, Krug, Susanne M., Maraspini, Riccardo, Otani, Tetsuhisa, Furuse, Mikio, Honigmann, Alf, Balda, Maria S., Matter, Karl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9740252/
https://www.ncbi.nlm.nih.gov/pubmed/36497035
http://dx.doi.org/10.3390/cells11233775
_version_ 1784848015013445632
author Haas, Alexis J.
Zihni, Ceniz
Krug, Susanne M.
Maraspini, Riccardo
Otani, Tetsuhisa
Furuse, Mikio
Honigmann, Alf
Balda, Maria S.
Matter, Karl
author_facet Haas, Alexis J.
Zihni, Ceniz
Krug, Susanne M.
Maraspini, Riccardo
Otani, Tetsuhisa
Furuse, Mikio
Honigmann, Alf
Balda, Maria S.
Matter, Karl
author_sort Haas, Alexis J.
collection PubMed
description Formation and maintenance of tissue barriers require the coordination of cell mechanics and cell–cell junction assembly. Here, we combined methods to modulate ECM stiffness and to measure mechanical forces on adhesion complexes to investigate how tight junctions regulate cell mechanics and epithelial morphogenesis. We found that depletion of the tight junction adaptor ZO-1 disrupted junction assembly and morphogenesis in an ECM stiffness-dependent manner and led to a stiffness-dependant reorganisation of active myosin. Both junction formation and morphogenesis were rescued by inhibition of actomyosin contractility. ZO-1 depletion also impacted mechanical tension at cell-matrix and E-cadherin-based cell–cell adhesions. The effect on E-cadherin also depended on ECM stiffness and correlated with effects of ECM stiffness on actin cytoskeleton organisation. However, ZO-1 knockout also revealed tension-independent functions of ZO-1. ZO-1-deficient cells could assemble functional barriers at low tension, but their tight junctions remained corrupted with strongly reduced and discontinuous recruitment of junctional components. Our results thus reveal that reciprocal regulation between ZO-1 and cell mechanics controls tight junction assembly and epithelial morphogenesis, and that, in a second, tension-independent step, ZO-1 is required to assemble morphologically and structurally fully assembled and functionally normal tight junctions.
format Online
Article
Text
id pubmed-9740252
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97402522022-12-11 ZO-1 Guides Tight Junction Assembly and Epithelial Morphogenesis via Cytoskeletal Tension-Dependent and -Independent Functions Haas, Alexis J. Zihni, Ceniz Krug, Susanne M. Maraspini, Riccardo Otani, Tetsuhisa Furuse, Mikio Honigmann, Alf Balda, Maria S. Matter, Karl Cells Article Formation and maintenance of tissue barriers require the coordination of cell mechanics and cell–cell junction assembly. Here, we combined methods to modulate ECM stiffness and to measure mechanical forces on adhesion complexes to investigate how tight junctions regulate cell mechanics and epithelial morphogenesis. We found that depletion of the tight junction adaptor ZO-1 disrupted junction assembly and morphogenesis in an ECM stiffness-dependent manner and led to a stiffness-dependant reorganisation of active myosin. Both junction formation and morphogenesis were rescued by inhibition of actomyosin contractility. ZO-1 depletion also impacted mechanical tension at cell-matrix and E-cadherin-based cell–cell adhesions. The effect on E-cadherin also depended on ECM stiffness and correlated with effects of ECM stiffness on actin cytoskeleton organisation. However, ZO-1 knockout also revealed tension-independent functions of ZO-1. ZO-1-deficient cells could assemble functional barriers at low tension, but their tight junctions remained corrupted with strongly reduced and discontinuous recruitment of junctional components. Our results thus reveal that reciprocal regulation between ZO-1 and cell mechanics controls tight junction assembly and epithelial morphogenesis, and that, in a second, tension-independent step, ZO-1 is required to assemble morphologically and structurally fully assembled and functionally normal tight junctions. MDPI 2022-11-25 /pmc/articles/PMC9740252/ /pubmed/36497035 http://dx.doi.org/10.3390/cells11233775 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Haas, Alexis J.
Zihni, Ceniz
Krug, Susanne M.
Maraspini, Riccardo
Otani, Tetsuhisa
Furuse, Mikio
Honigmann, Alf
Balda, Maria S.
Matter, Karl
ZO-1 Guides Tight Junction Assembly and Epithelial Morphogenesis via Cytoskeletal Tension-Dependent and -Independent Functions
title ZO-1 Guides Tight Junction Assembly and Epithelial Morphogenesis via Cytoskeletal Tension-Dependent and -Independent Functions
title_full ZO-1 Guides Tight Junction Assembly and Epithelial Morphogenesis via Cytoskeletal Tension-Dependent and -Independent Functions
title_fullStr ZO-1 Guides Tight Junction Assembly and Epithelial Morphogenesis via Cytoskeletal Tension-Dependent and -Independent Functions
title_full_unstemmed ZO-1 Guides Tight Junction Assembly and Epithelial Morphogenesis via Cytoskeletal Tension-Dependent and -Independent Functions
title_short ZO-1 Guides Tight Junction Assembly and Epithelial Morphogenesis via Cytoskeletal Tension-Dependent and -Independent Functions
title_sort zo-1 guides tight junction assembly and epithelial morphogenesis via cytoskeletal tension-dependent and -independent functions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9740252/
https://www.ncbi.nlm.nih.gov/pubmed/36497035
http://dx.doi.org/10.3390/cells11233775
work_keys_str_mv AT haasalexisj zo1guidestightjunctionassemblyandepithelialmorphogenesisviacytoskeletaltensiondependentandindependentfunctions
AT zihniceniz zo1guidestightjunctionassemblyandepithelialmorphogenesisviacytoskeletaltensiondependentandindependentfunctions
AT krugsusannem zo1guidestightjunctionassemblyandepithelialmorphogenesisviacytoskeletaltensiondependentandindependentfunctions
AT maraspiniriccardo zo1guidestightjunctionassemblyandepithelialmorphogenesisviacytoskeletaltensiondependentandindependentfunctions
AT otanitetsuhisa zo1guidestightjunctionassemblyandepithelialmorphogenesisviacytoskeletaltensiondependentandindependentfunctions
AT furusemikio zo1guidestightjunctionassemblyandepithelialmorphogenesisviacytoskeletaltensiondependentandindependentfunctions
AT honigmannalf zo1guidestightjunctionassemblyandepithelialmorphogenesisviacytoskeletaltensiondependentandindependentfunctions
AT baldamarias zo1guidestightjunctionassemblyandepithelialmorphogenesisviacytoskeletaltensiondependentandindependentfunctions
AT matterkarl zo1guidestightjunctionassemblyandepithelialmorphogenesisviacytoskeletaltensiondependentandindependentfunctions