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TRAF2 Is a Novel Ubiquitin E3 Ligase for the Na,K-ATPase β-Subunit That Drives Alveolar Epithelial Dysfunction in Hypercapnia

Several acute and chronic lung diseases are associated with alveolar hypoventilation leading to accumulation of CO(2) (hypercapnia). The β-subunit of the Na,K-ATPase plays a pivotal role in maintaining epithelial integrity by functioning as a cell adhesion molecule and regulating cell surface stabil...

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Autores principales: Gabrielli, Nieves M., Mazzocchi, Luciana C., Kryvenko, Vitalii, Tello, Khodr, Herold, Susanne, Morty, Rory E., Grimminger, Friedrich, Dada, Laura A., Seeger, Werner, Sznajder, Jacob I., Vadász, István
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8283768/
https://www.ncbi.nlm.nih.gov/pubmed/34277634
http://dx.doi.org/10.3389/fcell.2021.689983
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author Gabrielli, Nieves M.
Mazzocchi, Luciana C.
Kryvenko, Vitalii
Tello, Khodr
Herold, Susanne
Morty, Rory E.
Grimminger, Friedrich
Dada, Laura A.
Seeger, Werner
Sznajder, Jacob I.
Vadász, István
author_facet Gabrielli, Nieves M.
Mazzocchi, Luciana C.
Kryvenko, Vitalii
Tello, Khodr
Herold, Susanne
Morty, Rory E.
Grimminger, Friedrich
Dada, Laura A.
Seeger, Werner
Sznajder, Jacob I.
Vadász, István
author_sort Gabrielli, Nieves M.
collection PubMed
description Several acute and chronic lung diseases are associated with alveolar hypoventilation leading to accumulation of CO(2) (hypercapnia). The β-subunit of the Na,K-ATPase plays a pivotal role in maintaining epithelial integrity by functioning as a cell adhesion molecule and regulating cell surface stability of the catalytic α-subunit of the transporter, thereby, maintaining optimal alveolar fluid balance. Here, we identified the E3 ubiquitin ligase for the Na,K-ATPase β-subunit, which promoted polyubiquitination, subsequent endocytosis and proteasomal degradation of the protein upon exposure of alveolar epithelial cells to elevated CO(2) levels, thus impairing alveolar integrity. Ubiquitination of the Na,K-ATPase β-subunit required lysine 5 and 7 and mutating these residues (but not other lysines) prevented trafficking of Na,K-ATPase from the plasma membrane and stabilized the protein upon hypercapnia. Furthermore, ubiquitination of the Na,K-ATPase β-subunit was dependent on prior phosphorylation at serine 11 by protein kinase C (PKC)-ζ. Using a protein microarray, we identified the tumor necrosis factor receptor-associated factor 2 (TRAF2) as the E3 ligase driving ubiquitination of the Na,K-ATPase β-subunit upon hypercapnia. Of note, prevention of Na,K-ATPase β-subunit ubiquitination was necessary and sufficient to restore the formation of cell-cell junctions under hypercapnic conditions. These results suggest that a hypercapnic environment in the lung may lead to persistent epithelial dysfunction in affected patients. As such, the identification of the E3 ligase for the Na,K-ATPase may provide a novel therapeutic target, to be employed in patients with acute or chronic hypercapnic respiratory failure, aiming to restore alveolar epithelial integrity.
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spelling pubmed-82837682021-07-17 TRAF2 Is a Novel Ubiquitin E3 Ligase for the Na,K-ATPase β-Subunit That Drives Alveolar Epithelial Dysfunction in Hypercapnia Gabrielli, Nieves M. Mazzocchi, Luciana C. Kryvenko, Vitalii Tello, Khodr Herold, Susanne Morty, Rory E. Grimminger, Friedrich Dada, Laura A. Seeger, Werner Sznajder, Jacob I. Vadász, István Front Cell Dev Biol Cell and Developmental Biology Several acute and chronic lung diseases are associated with alveolar hypoventilation leading to accumulation of CO(2) (hypercapnia). The β-subunit of the Na,K-ATPase plays a pivotal role in maintaining epithelial integrity by functioning as a cell adhesion molecule and regulating cell surface stability of the catalytic α-subunit of the transporter, thereby, maintaining optimal alveolar fluid balance. Here, we identified the E3 ubiquitin ligase for the Na,K-ATPase β-subunit, which promoted polyubiquitination, subsequent endocytosis and proteasomal degradation of the protein upon exposure of alveolar epithelial cells to elevated CO(2) levels, thus impairing alveolar integrity. Ubiquitination of the Na,K-ATPase β-subunit required lysine 5 and 7 and mutating these residues (but not other lysines) prevented trafficking of Na,K-ATPase from the plasma membrane and stabilized the protein upon hypercapnia. Furthermore, ubiquitination of the Na,K-ATPase β-subunit was dependent on prior phosphorylation at serine 11 by protein kinase C (PKC)-ζ. Using a protein microarray, we identified the tumor necrosis factor receptor-associated factor 2 (TRAF2) as the E3 ligase driving ubiquitination of the Na,K-ATPase β-subunit upon hypercapnia. Of note, prevention of Na,K-ATPase β-subunit ubiquitination was necessary and sufficient to restore the formation of cell-cell junctions under hypercapnic conditions. These results suggest that a hypercapnic environment in the lung may lead to persistent epithelial dysfunction in affected patients. As such, the identification of the E3 ligase for the Na,K-ATPase may provide a novel therapeutic target, to be employed in patients with acute or chronic hypercapnic respiratory failure, aiming to restore alveolar epithelial integrity. Frontiers Media S.A. 2021-07-02 /pmc/articles/PMC8283768/ /pubmed/34277634 http://dx.doi.org/10.3389/fcell.2021.689983 Text en Copyright © 2021 Gabrielli, Mazzocchi, Kryvenko, Tello, Herold, Morty, Grimminger, Dada, Seeger, Sznajder and Vadász. https://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(s) 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 Cell and Developmental Biology
Gabrielli, Nieves M.
Mazzocchi, Luciana C.
Kryvenko, Vitalii
Tello, Khodr
Herold, Susanne
Morty, Rory E.
Grimminger, Friedrich
Dada, Laura A.
Seeger, Werner
Sznajder, Jacob I.
Vadász, István
TRAF2 Is a Novel Ubiquitin E3 Ligase for the Na,K-ATPase β-Subunit That Drives Alveolar Epithelial Dysfunction in Hypercapnia
title TRAF2 Is a Novel Ubiquitin E3 Ligase for the Na,K-ATPase β-Subunit That Drives Alveolar Epithelial Dysfunction in Hypercapnia
title_full TRAF2 Is a Novel Ubiquitin E3 Ligase for the Na,K-ATPase β-Subunit That Drives Alveolar Epithelial Dysfunction in Hypercapnia
title_fullStr TRAF2 Is a Novel Ubiquitin E3 Ligase for the Na,K-ATPase β-Subunit That Drives Alveolar Epithelial Dysfunction in Hypercapnia
title_full_unstemmed TRAF2 Is a Novel Ubiquitin E3 Ligase for the Na,K-ATPase β-Subunit That Drives Alveolar Epithelial Dysfunction in Hypercapnia
title_short TRAF2 Is a Novel Ubiquitin E3 Ligase for the Na,K-ATPase β-Subunit That Drives Alveolar Epithelial Dysfunction in Hypercapnia
title_sort traf2 is a novel ubiquitin e3 ligase for the na,k-atpase β-subunit that drives alveolar epithelial dysfunction in hypercapnia
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8283768/
https://www.ncbi.nlm.nih.gov/pubmed/34277634
http://dx.doi.org/10.3389/fcell.2021.689983
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