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Identification and characterization of a metalloprotease activity from Helicobacter pylori
1Department of Clinical Medicine, Trinity College, University of Dublin, Ireland. hjwindle@tcd.ie
Abstract:
Helicobacter pylori produces a metalloprotease with a native molecular size of approximately 200 kDa, as determined by size-exclusion chromatography. Subcellular distribution studies demonstrated that the activity was associated with the outer membrane fraction of the bacterium. In addition, the protease was secreted by the bacterium when grown in liquid culture. The enzyme activity was measured by hydrolysis of azocasein and biotinylated casein and exhibited optimal caseinolytic activity at pH 8.0 (37 degrees C). The activity was inhibited by EDTA, 1,10-phenanthroline, phosphoramidon, pyridine-2,6-dicarboxylic acid, and 8-hydroxyquinoline-5-sulfonic acid (HQSA). Inhibition by HQSA was reversed by zinc, whereas inhibition due to EDTA was reversed by excess calcium, thus indicating that the enzyme was a zinc-dependent, calcium-stabilized endoproteinase. Furthermore, titration with Zn2+ of a desalted, active-site zinc-chelated preparation of the protease demonstrated that Zn2+ was essential for activity. Leupeptin, phenylmethylsulfonyl fluoride, E-64, pepstatin A, dithiothreitol, and 2-mercaptoethanol had no effect on enzymatic activity. Addition of Ca2+ or Mg2+ to the incubation medium resulted in approximately a twofold stimulation of the azocaseinolytic activity of the enzyme. The protease was stably expressed since it was active even after repeated subculture of the bacterium. Bovine serum albumin, hide powder azure, and elastin-Congo red remained intact even after prolonged exposure to the enzyme. The surface expression of this metalloprotease activity raises the possibility that this enzyme may be involved in the proteolysis of a variety of host proteins in vivo and thereby contributes to gastric pathology.
Insights
Helicobacter pylori secretes a zinc-dependent metalloprotease from its outer membrane. This enzyme, crucial for gastric pathology, shows optimal activity at pH 8.0 and is stabilized by calcium.
Area of Science:
- Microbiology
- Enzymology
- Biochemistry
Background:
- Helicobacter pylori is a significant human pathogen linked to various gastric diseases.
- Understanding bacterial virulence factors is crucial for developing therapeutic strategies.
Purpose of the Study:
- To characterize the metalloprotease produced by Helicobacter pylori.
- To investigate its enzymatic properties, localization, and potential role in pathogenesis.
Main Methods:
- Size-exclusion chromatography for molecular size determination.
- Subcellular fractionation to identify enzyme localization.
- Enzyme activity assays using casein substrates.
- Inhibition and activation studies with various chemical agents and metal ions.
Main Results:
- A ~200 kDa metalloprotease was identified in the outer membrane and secreted by H. pylori.
- Optimal caseinolytic activity was observed at pH 8.0 and 37°C.
- The enzyme is zinc-dependent and calcium-stabilized, with activity enhanced by Ca2+ and Mg2+.
- The protease did not degrade albumin, collagen, or elastin, suggesting specific host protein targets.
Conclusions:
- Helicobacter pylori possesses a secreted, zinc-dependent metalloprotease with specific activity requirements.
- Its outer membrane localization and secretion suggest a role in host-pathogen interactions.
- The enzyme's potential involvement in proteolysis may contribute to gastric pathology.