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Monitoring the Assembly of a Secreted Bacterial Virulence Factor Using Site-specific Crosslinking
Published on: December 17, 2013
The outer membrane protease PgtE of Salmonella enterica interferes with the alternative complement pathway by
Rauna Riva1, Timo K Korhonen2, Seppo Meri3
1Immunobiology Research Program, Research Program Unit, University of Helsinki Helsinki, Finland ; Department of Bacteriology and Immunology, Haartman Institute, University of Helsinki Helsinki, Finland.
Abstract:
The virulence factor PgtE is an outer membrane protease (omptin) of the zoonotic pathogen Salmonella enterica that causes diseases ranging from gastroenteritis to severe enteric fever. It is surface exposed in bacteria that have a short-chain, i.e., rough LPS, as observed e.g., in bacteria residing inside macrophages or just emerging from them. We investigated whether PgtE cleaves the complement factors B (B) and H (H), key proteins controlling formation and inactivation of the complement protein C3b and thereby the activity of the complement system. S. enterica serovar Typhimurium or omptin-expressing recombinant E. coli bacteria were incubated with purified human complement proteins or recombinant H fragments. PgtE cleaved both B and H, whereas its close homolog Pla of Yersinia pestis cleaved only H. H was cleaved at both N- and C-termini, while the central region resisted proteolysis. Because of multiple effects of PgtE on complement components (cleavage of C3, C3b, B, and H) we assessed its effect on the opsonophagocytosis of Salmonella. In human serum, C3 cleavage was dependent on proteolytically active PgtE. Human neutrophils interacted less with serum-opsonized FITC-stained S. enterica 14028R than with the isogenic ΔpgtE strain, as analyzed by flow cytometry. In conclusion, cleavage of B and H by PgtE, together with C3 cleavage, affects the C3-mediated recognition of S. enterica by human neutrophils, thus thwarting the immune protection against Salmonella.
Insights
Salmonella enterica
Area of Science:
- Microbiology
- Immunology
- Molecular Biology
Background:
- Salmonella enterica is a zoonotic pathogen causing significant human diseases.
- The outer membrane protease PgtE is a key virulence factor expressed by Salmonella.
- PgtE is surface-exposed on bacteria with rough lipopolysaccharide (LPS), common in intracellular environments.
Purpose of the Study:
- To investigate the role of PgtE in cleaving complement factors B and H.
- To determine the impact of PgtE-mediated complement cleavage on Salmonella opsonophagocytosis.
Main Methods:
- Incubation of Salmonella Typhimurium or recombinant E. coli with purified human complement factors B and H.
- Analysis of complement factor cleavage by PgtE and its homolog Pla.
- Assessment of neutrophil interaction with serum-opsonized Salmonella using flow cytometry.
Main Results:
- PgtE cleaved both complement factors B and H.
- Yersinia pestis homolog Pla cleaved only H.
- PgtE-mediated cleavage of C3, B, and H impaired neutrophil opsonophagocytosis of Salmonella.
Conclusions:
- PgtE's cleavage of complement factors B and H contributes to Salmonella's immune evasion.
- This virulence mechanism hinders complement-mediated recognition and phagocytosis by neutrophils.
- PgtE plays a critical role in Salmonella pathogenesis by subverting host immune defenses.
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