A novel tumor necrosis factor-mediated mechanism of direct epithelial sodium channel activation

Alveolar liquid clearance is regulated by Na(+) uptake through the apically expressed epithelial sodium channel (ENaC) and basolaterally localized Na(+)-K(+)-ATPase in type II alveolar epithelial cells. Dysfunction of these Na(+) transporters during pulmonary inflammation can contribute to pulmonary...

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Veröffentlicht in:American journal of respiratory and critical care medicine 2014-09, Vol.190 (5), p.522-532
Hauptverfasser: Czikora, István, Alli, Abdel, Bao, Hui-Fang, Kaftan, David, Sridhar, Supriya, Apell, Hans-Jürgen, Gorshkov, Boris, White, Richard, Zimmermann, Astrid, Wendel, Albrecht, Pauly-Evers, Meike, Hamacher, Jürg, Garcia-Gabay, Irène, Fischer, Bernhard, Verin, Alexander, Bagi, Zsolt, Pittet, Jean Francois, Shabbir, Waheed, Lemmens-Gruber, Rosa, Chakraborty, Trinad, Lazrak, Ahmed, Matthay, Michael A, Eaton, Douglas C, Lucas, Rudolf
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Sprache:eng
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Zusammenfassung:Alveolar liquid clearance is regulated by Na(+) uptake through the apically expressed epithelial sodium channel (ENaC) and basolaterally localized Na(+)-K(+)-ATPase in type II alveolar epithelial cells. Dysfunction of these Na(+) transporters during pulmonary inflammation can contribute to pulmonary edema. In this study, we sought to determine the precise mechanism by which the TIP peptide, mimicking the lectin-like domain of tumor necrosis factor (TNF), stimulates Na(+) uptake in a homologous cell system in the presence or absence of the bacterial toxin pneumolysin (PLY). We used a combined biochemical, electrophysiological, and molecular biological in vitro approach and assessed the physiological relevance of the lectin-like domain of TNF in alveolar liquid clearance in vivo by generating triple-mutant TNF knock-in mice that express a mutant TNF with deficient Na(+) uptake stimulatory activity. TIP peptide directly activates ENaC, but not the Na(+)-K(+)-ATPase, upon binding to the carboxy-terminal domain of the α subunit of the channel. In the presence of PLY, a mediator of pneumococcal-induced pulmonary edema, this binding stabilizes the ENaC-PIP2-MARCKS complex, which is necessary for the open probability conformation of the channel and preserves ENaC-α protein expression, by means of blunting the protein kinase C-α pathway. Triple-mutant TNF knock-in mice are more prone than wild-type mice to develop edema with low-dose intratracheal PLY, correlating with reduced pulmonary ENaC-α subunit expression. These results demonstrate a novel TNF-mediated mechanism of direct ENaC activation and indicate a physiological role for the lectin-like domain of TNF in the resolution of alveolar edema during inflammation.
ISSN:1073-449X
1535-4970
DOI:10.1164/rccm.201405-0833OC