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Integrin-β4 regulates the dynamic changes of phenotypic characteristics in association with epithelial-mesenchymal transition (EMT) and RhoA activity in airway epithelial cells during injury and repair

Background: In airway disease such as asthma a hyperactive cellular event of epithelial-mesenchymal transition (EMT) is considered as the mechanism of pathological airway tissue remodeling after injury to the airway epithelium. And the initiation of EMT in the airways depends on the epithelial disru...

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Autores principales: Tan, Mei-Ling, Huang, Wen-Jie, Wang, Yue, Liu, Lei, Pan, Yan, Li, Jing-Jing, Zhang, Jiang, Ouyang, Mingxing, Qu, Xiang-Ping, Liu, Hui-Jun, Liu, Chi, Zeng, Dan, Qin, Xiao-Qun, Deng, Linhong, Xiang, Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8771845/
https://www.ncbi.nlm.nih.gov/pubmed/35173551
http://dx.doi.org/10.7150/ijbs.65174
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author Tan, Mei-Ling
Huang, Wen-Jie
Wang, Yue
Liu, Lei
Pan, Yan
Li, Jing-Jing
Zhang, Jiang
Ouyang, Mingxing
Qu, Xiang-Ping
Liu, Hui-Jun
Liu, Chi
Zeng, Dan
Qin, Xiao-Qun
Deng, Linhong
Xiang, Yang
author_facet Tan, Mei-Ling
Huang, Wen-Jie
Wang, Yue
Liu, Lei
Pan, Yan
Li, Jing-Jing
Zhang, Jiang
Ouyang, Mingxing
Qu, Xiang-Ping
Liu, Hui-Jun
Liu, Chi
Zeng, Dan
Qin, Xiao-Qun
Deng, Linhong
Xiang, Yang
author_sort Tan, Mei-Ling
collection PubMed
description Background: In airway disease such as asthma a hyperactive cellular event of epithelial-mesenchymal transition (EMT) is considered as the mechanism of pathological airway tissue remodeling after injury to the airway epithelium. And the initiation of EMT in the airways depends on the epithelial disruption involving dissolution and/or destabilization of the adhesive structures between the cells and ECM. Previously, we have shown that integrin-β4, an epithelial adhesion molecule in bronchial epithelium is an important regulator of cell proliferation and wound repair in human airway epithelial cells. Therefore, in this study we aimed to investigate whether integrin-β4 also regulates EMT phenotypes during injury and repair in airway epithelial cells of both wild type/integrin-β4(-/-) mice in vivo and cultured cells treated with integrin-β4/nonsense siRNA in vitro. Methods: We induced injury to the airway epithelial cells by either repeated exposure to ozone and mechanical scratch wound, and subsequently examined the EMT-related phenotypic features in the airway epithelial cells including biomarkers expression, adhesion and cytoskeleton reorganization and cell stiffness. Results: The results show that in response to injury (ozone exposure/scratch wound) and subsequent spontaneous repair (ozone withdrawal/wound healing) both in vivo and in vitro, the airway epithelial cells underwent dynamic changes in the epithelial and mesenchymal biomarkers expression, adhesion and cytoskeleton structures as well as cell stiffness, all together exhibiting enhanced EMT phenotypic features after injury and reversal of the injury-induced effects during repair. Importantly, these injury/repair-associated EMT phenotypic changes in airway epithelial cells appeared to be dependent on integrin-β4 expression. More specifically, when integrin-β4 was deficient in mice (integrin-β4(-/-)) the repair of ozone-injured airway epithelium was impaired and the recovery of ozone-enhanced EMT biomarkers expression in the airway epithelium was delayed. Similarly, in the scratch wounded airway epithelial cells with integrin-β4 knockdown, the cells were impaired in all aspects related to EMT during wound and repair including cell proliferation, wound closure rate, adhesion and cytoskeleton protein expression (vinculin and vimentin), mesenchymal-like F-actin reorganization, cell stiffness and RhoA activation. Conclusion: Taken together, these results suggested that integrin-β4 may be essential in regulating the effects of injury and repair on EMT in airway epithelial cells via influencing both the cell adhesion to ECM and cells' physical phenotypes through RhoA signaling pathway.
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spelling pubmed-87718452022-02-15 Integrin-β4 regulates the dynamic changes of phenotypic characteristics in association with epithelial-mesenchymal transition (EMT) and RhoA activity in airway epithelial cells during injury and repair Tan, Mei-Ling Huang, Wen-Jie Wang, Yue Liu, Lei Pan, Yan Li, Jing-Jing Zhang, Jiang Ouyang, Mingxing Qu, Xiang-Ping Liu, Hui-Jun Liu, Chi Zeng, Dan Qin, Xiao-Qun Deng, Linhong Xiang, Yang Int J Biol Sci Research Paper Background: In airway disease such as asthma a hyperactive cellular event of epithelial-mesenchymal transition (EMT) is considered as the mechanism of pathological airway tissue remodeling after injury to the airway epithelium. And the initiation of EMT in the airways depends on the epithelial disruption involving dissolution and/or destabilization of the adhesive structures between the cells and ECM. Previously, we have shown that integrin-β4, an epithelial adhesion molecule in bronchial epithelium is an important regulator of cell proliferation and wound repair in human airway epithelial cells. Therefore, in this study we aimed to investigate whether integrin-β4 also regulates EMT phenotypes during injury and repair in airway epithelial cells of both wild type/integrin-β4(-/-) mice in vivo and cultured cells treated with integrin-β4/nonsense siRNA in vitro. Methods: We induced injury to the airway epithelial cells by either repeated exposure to ozone and mechanical scratch wound, and subsequently examined the EMT-related phenotypic features in the airway epithelial cells including biomarkers expression, adhesion and cytoskeleton reorganization and cell stiffness. Results: The results show that in response to injury (ozone exposure/scratch wound) and subsequent spontaneous repair (ozone withdrawal/wound healing) both in vivo and in vitro, the airway epithelial cells underwent dynamic changes in the epithelial and mesenchymal biomarkers expression, adhesion and cytoskeleton structures as well as cell stiffness, all together exhibiting enhanced EMT phenotypic features after injury and reversal of the injury-induced effects during repair. Importantly, these injury/repair-associated EMT phenotypic changes in airway epithelial cells appeared to be dependent on integrin-β4 expression. More specifically, when integrin-β4 was deficient in mice (integrin-β4(-/-)) the repair of ozone-injured airway epithelium was impaired and the recovery of ozone-enhanced EMT biomarkers expression in the airway epithelium was delayed. Similarly, in the scratch wounded airway epithelial cells with integrin-β4 knockdown, the cells were impaired in all aspects related to EMT during wound and repair including cell proliferation, wound closure rate, adhesion and cytoskeleton protein expression (vinculin and vimentin), mesenchymal-like F-actin reorganization, cell stiffness and RhoA activation. Conclusion: Taken together, these results suggested that integrin-β4 may be essential in regulating the effects of injury and repair on EMT in airway epithelial cells via influencing both the cell adhesion to ECM and cells' physical phenotypes through RhoA signaling pathway. Ivyspring International Publisher 2022-01-09 /pmc/articles/PMC8771845/ /pubmed/35173551 http://dx.doi.org/10.7150/ijbs.65174 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Tan, Mei-Ling
Huang, Wen-Jie
Wang, Yue
Liu, Lei
Pan, Yan
Li, Jing-Jing
Zhang, Jiang
Ouyang, Mingxing
Qu, Xiang-Ping
Liu, Hui-Jun
Liu, Chi
Zeng, Dan
Qin, Xiao-Qun
Deng, Linhong
Xiang, Yang
Integrin-β4 regulates the dynamic changes of phenotypic characteristics in association with epithelial-mesenchymal transition (EMT) and RhoA activity in airway epithelial cells during injury and repair
title Integrin-β4 regulates the dynamic changes of phenotypic characteristics in association with epithelial-mesenchymal transition (EMT) and RhoA activity in airway epithelial cells during injury and repair
title_full Integrin-β4 regulates the dynamic changes of phenotypic characteristics in association with epithelial-mesenchymal transition (EMT) and RhoA activity in airway epithelial cells during injury and repair
title_fullStr Integrin-β4 regulates the dynamic changes of phenotypic characteristics in association with epithelial-mesenchymal transition (EMT) and RhoA activity in airway epithelial cells during injury and repair
title_full_unstemmed Integrin-β4 regulates the dynamic changes of phenotypic characteristics in association with epithelial-mesenchymal transition (EMT) and RhoA activity in airway epithelial cells during injury and repair
title_short Integrin-β4 regulates the dynamic changes of phenotypic characteristics in association with epithelial-mesenchymal transition (EMT) and RhoA activity in airway epithelial cells during injury and repair
title_sort integrin-β4 regulates the dynamic changes of phenotypic characteristics in association with epithelial-mesenchymal transition (emt) and rhoa activity in airway epithelial cells during injury and repair
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8771845/
https://www.ncbi.nlm.nih.gov/pubmed/35173551
http://dx.doi.org/10.7150/ijbs.65174
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