Extracellular proteolytic activation of Pseudomonas aeruginosa aminopeptidase (PaAP) and insight into the role of its non-catalytic N-terminal domain

Author:

Axelrad Itschak,Safrin Mary,Cahan Rivka,Suh Sang-Jin,Ohman Dennis E.,Kessler EfratORCID

Abstract

Pseudomonas aeruginosa secretes several endopeptidases, including elastase, alkaline proteinase (Apr), a lysine-specific endopeptidase (LysC), and an aminopeptidase (PaAP), all of which are important virulence factors. Activation of the endopeptidases requires removal of an inhibitory N-terminal propeptide. Activation of pro-PaAP, in contrast, requires C-terminal processing. The activating proteases of pro-PaAP and their cleavage site(s) have not yet been defined. Studying pro-PaAP processing in a wild type P. aeruginosa strain and strains lacking either elastase or both elastase and Apr, we detected three processing variants, each ~56 kDa in size (AP56). Activity assays and N- and C-terminal sequence analyses of these variants pointed at LysC as the principal activating protease, cleaving a Lys512-Ala513 peptide bond at the C-terminal end of pro-PaAP. Elastase and/or Apr are required for activation of LysC, suggesting both are indirectly involved in activation of PaAP. To shed light on the function(s) of the N-terminal domain of AP56, we purified recombinant AP56 and generated from it the 28 kDa catalytic domain (AP28). The kinetic constants (Km and Kcat) for hydrolysis of Leu-, Lys-, Arg- and Met-p-nitroanilide (pNA) derivatives by AP56 and AP28 were then determined. The catalytic coefficients (Kcat/Km) for hydrolysis of all four substrates by AP28 and AP56 were comparable, indicating that the non-catalytic domain is not involved in hydrolysis of small substrates. It may, however, regulate hydrolysis of natural peptides/proteins. Lys-pNA was hydrolyzed 2 to 3-fold more rapidly than Leu-pNA and ~8-fold faster than Arg- or Met-pNA, indicating that Lys-pNA was the preferred substrate.

Funder

U.S. Department of Veterans Affairs

National Institutes of Health

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference56 articles.

1. Pseudomonas aeruginosa: a formidable and ever-present adversary;KG Kerr;J Hosp Infect,2009

2. Pseudomonas aeruginosa keratitis: Protease IV and PASP as corneal virulence mediators;R O’Callaghan;Microorganisms,2019

3. Updates on the pathogenicity status of Pseudomonas aeruginosa;MW Azam;Drug Discovery Today,2019

4. Cystic fibrosis infections: treatment strategies and prospects;AM George;FEMS Microbiol Lett,2009

5. Hoge R, Pelzer A, Rosenau AF, Wilhelm S. Weapons of a pathogen: Proteases and their role in virulence of Pseudomonas aeruginosa. In Mendez-Vilas A (ed), Current Research, Technology and Education Topics in Applied Microbiology and Microbial Biotechnology. 2010; Vol 2. Formatex Microbiology Series no. 2. Formatex, Badajoz, Spain. 2010. pp 383–395.

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