Characterization of human pre-elafin mutants: full antipeptidase activity is essential to preserve lung tissue integrity in experimental emphysema

Author:

Doucet Alain12,Bouchard Dominique23,Janelle Marie France23,Bellemare Audrey12,Gagné Stéphane12,Tremblay Guy M.23,Bourbonnais Yves12

Affiliation:

1. Département de biochimie et de microbiologie, Université Laval, Québec, Qc, Canada

2. Centre de recherche sur la fonction, la structure et l'ingénierie des protéines (CREFSIP), Université Laval, Québec, Qc, Canada 61K 7P4

3. Unité de recherche, Hôpital Laval, Institut de cardiologie et de pneumologie de l'Université Laval, Quebec, Qc, Canada 61V 465

Abstract

Pre-elafin is a tight-binding inhibitor of neutrophil elastase and myeloblastin; two enzymes thought to contribute to tissue damage in lung emphysema. Previous studies have established that pre-elafin is also an effective anti-inflammatory molecule. However, it is not clear whether both functions are linked to the antipeptidase activity of pre-elafin. As a first step toward elucidating the structure/function relationship of this protein, we describe here the construction and characterization of pre-elafin variants with attenuated antipeptidase potential. In these mutants, the P1′ methionine residue of the inhibitory loop is replaced by either a lysine (pre-elafinM25K) or a glycine (pre-elafinM25G) residue. Both mutated variants are stable and display biochemical properties undistinguishable from WT (wild-type) pre-elafin. However, compared with WT pre-elafin, their inhibitory constants are increased by one to four orders of magnitude toward neutrophil elastase, myeloblastin and pancreatic elastase, depending on the variants and enzymes tested. As suggested by molecular modelling, this attenuated inhibitory potential correlates with decreased van der Waals interactions between the variants and the enzymes S1′ subsite. In elastase-induced experimental emphysema in mice, only WT pre-elafin protected against tissue destruction, as assessed by the relative airspace enlargement measured using lung histopathological sections. Pre-elafin and both mutants prevented transient neutrophil alveolitis. However, even the modestly affected pre-elafinM25K mutant, as assayed in vitro with small synthetic substrates, was a poor inhibitor of the neutrophil elastase and myeloblastin elastolytic activity measured with insoluble elastin. We therefore conclude that full antipeptidase activity of pre-elafin is essential to protect against lung tissue lesions in this experimental model.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference41 articles.

1. Pathogenesis of COPD;Spurzem;Semin. Respir. Crit. Care Med.,2005

2. Pathology of chronic airflow obstruction;Thurlbeck,1991

3. Neutrophil-derived elastases and their inhibitors: potential role in the pathogenesis of lung disease;Reid;Curr. Opin. Investig. Drugs,2001

4. The role of matrix metalloproteinases (MMPs) in the pathophysiology of chronic obstructive pulmonary disease (COPD): a therapeutic role for inhibitors of MMPs?;Belvisi;Inflamm. Res.,2003

5. Matrix metalloproteinases in lung biology;Parks;Respir. Res.,2001

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