Molecular Diversity of a Putative Virulence Factor: Purification and Characterization of Isoforms of an Extracellular Serine Glutamyl Endopeptidase of Enterococcus faecalis with Different Enzymatic Activities

Author:

Kawalec Magdalena12,Potempa Jan34,Moon Jonathan L.3,Travis James3,Murray Barbara E.15

Affiliation:

1. Division of Infectious Diseases, Department of Internal Medicine

2. National Institute of Public Health, Warsaw

3. Department of Biochemistry and Molecular Biology, University of Georgia, Athens, Georgia

4. Department of Microbiology, Faculty of Biotechnology, Jagiellonian University, Cracow, Poland

5. Center for the Study of Emerging and Reemerging Pathogens, University of Texas Medical School, Houston, Texas

Abstract

ABSTRACT A previously identified gene sprE of Enterococcus faecalis strain OG1 was shown to encode an extracellular serine protease that appears to belong to the glutamyl endopeptidase I staphylococcal group. A single form of SprE with a molecular mass of 25 kDa and a pH optimum between 7.0 and 7.5 was isolated from culture supernatant of wild-type E. faecalis strain OG1RF (TX4002); this form was apparently generated by cleavage of the Ser −1 -Leu 1 and Arg 230 -Leu 231 peptide bonds of the secreted zymogen. In contrast, the culture supernatant of the gelatinase-null mutant, TX5264, with a nonpolar deletion of gelE which encodes the E. faecalis gelatinase, was found to contain several forms of SprE proteolytically processed on both the N and C termini; in addition to a full-length zymogen and a truncated zymogen, three mature forms of the SprE proteinase, Leu 1 -Ala 237 , Ser −1 -Glu 227 , and Leu 1 -Glu 227 , were identified. As with the V8 proteinase of Staphylococcus aureus , the closest homologue of SprE, all of the active forms cleaved specifically Glu-Xaa peptide bonds but with substantially different efficiencies, while none was able to hydrolyze peptide bonds with Asp in the P1 position. The most active of all these enzyme forms against several substrates, including human fibrinogen and β-chain insulin, was the Ser −1 -Glu 227 ( −1 S-SprE) isolated from TX5264; −1 S-SprE, in contrast to other forms of SprE, was unstable at 37°C, apparently due to autodegradation. In conclusion, our results demonstrate that sprE encodes a highly specific serine-type glutamyl endopeptidase, the maturation of which is dependent on the presence of gelatinase. In the absence of gelatinase activity, the aberrant processing of pro-SprE results in the appearance of a “superactive” form of the enzyme, −1 S-SprE.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference66 articles.

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3. Emerging Family of Proline-Specific Peptidases of Porphyromonas gingivalis : Purification and Characterization of Serine Dipeptidyl Peptidase, a Structural and Functional Homologue of Mammalian Prolyl Dipeptidyl Peptidase IV

4. Banbula, A., P. Mak, M. Bugno, J. Silberring, A. Dubin, D. Nelson, J. Travis, and J. Potempa. 1999. Prolyl tripeptidyl peptidase from Porphyromonas gingivalis.A novel enzyme with possible pathological implications for the development of periodontitis. J. Biol. Chem.274:9246-9252.

5. Banbula, A., J. Potempa, J. Travis, C. Fernandez-Catalan, K. Mann, R. Huber, W. Bode, and F. Medrano. 1998. Amino-acid sequence and three-dimensional structure of the Staphylococcus aureus metalloproteinase at 1.72 A resolution. Structure6:1185-1193.

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