A novel neutrophil elastase inhibitor prevents elastase activation and surface cleavage of the epithelial sodium channel expressed in Xenopus laevis oocytes.

Details

Serval ID
serval:BIB_35E5FA553DC5
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
A novel neutrophil elastase inhibitor prevents elastase activation and surface cleavage of the epithelial sodium channel expressed in Xenopus laevis oocytes.
Journal
Journal of Biological Chemistry
Author(s)
Harris M., Firsov D., Vuagniaux G., Stutts M.J., Rossier B.C.
ISSN
0021-9258 (Print)
ISSN-L
0021-9258
Publication state
Published
Issued date
2007
Peer-reviewed
Oui
Volume
282
Number
1
Pages
58-64
Language
english
Abstract
The amiloride-sensitive epithelial sodium channel (ENaC) constitutes a limiting step in sodium reabsorption across distal airway epithelium and controlling mucociliary clearance. ENaC is activated by serine proteases secreted in the extracellular milieu. In cystic fibrosis lungs, high concentrations of secreted neutrophil elastase (NE) are observed. hNE could activate ENaC and contribute to further decreased mucociliary clearance. The aims of this study were (i) to test the ability of an engineered human neutrophil elastase inhibitor (EPI-hNE4) to specifically inhibit the elastase activation of ENaC-mediated amiloride-sensitive currents (I(Na)) and (ii) to examine the effect of elastase on cell surface expression of ENaC and its cleavage pattern (exogenous proteolysis). Oocytes were exposed to hNE (10-100 microg/ml) and/or trypsin (10 microg/ml) for 2-5 min in the presence or absence of EPI-hNE4 (0.7 microm). hNE activated I(Na) 3.6-fold (p < 0.001) relative to non-treated hENaC-injected oocytes. EPI-hNE4 fully inhibited hNE-activated I(Na) but had no effect on trypsin- or prostasin-activated I(Na). The co-activation of I(Na) by hNE and trypsin was not additive. Biotinylation experiments revealed that cell surface gamma ENaC (but not alpha or beta ENaC) exposed to hNE for 2 min was cleaved (as a 67-kDa fragment) and correlated with increased I(Na). The elastase-induced exogenous proteolysis pattern is distinct from the endogenous proteolysis pattern induced upon preferential assembly, suggesting a causal relationship between gamma ENaC cleavage and ENaC activation, taking place at the plasma membrane.
Keywords
Animals, Cell Membrane/metabolism, Enzyme Activation, Enzyme Inhibitors/chemistry, Epithelial Sodium Channel/metabolism, Epithelial Sodium Channel/physiology, Leukocyte Elastase/antagonists & inhibitors, Oocytes/metabolism, Peptides/chemistry, Peptides/pharmacology, Protein Engineering, RNA, Complementary/metabolism, Serine Endopeptidases/chemistry, Surface Properties, Trypsin/chemistry, Xenopus laevis
Pubmed
Web of science
Open Access
Yes
Create date
24/01/2008 13:32
Last modification date
20/08/2019 14:23
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