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Expression of two different antiphagocytic M proteins by Streptococcus pyogenes of the OF+ lineage
A Thern1, M Wästfelt, G Lindahl
1Department of Medical Microbiology, Lund University, Sweden.
Abstract:
All clinical isolates of Streptococcus pyogenes (group A streptococcus) share the ability to resist phagocytosis and grow in human blood. In many strains, this property is due to the expression of a single antiphagocytic M protein, while other strains express more than one M-like molecule, of which the role in phagocytosis resistance is unclear. In particular, all S. pyogenes strains of the OF+ lineage, representing approximately half of all isolates, express two M-like proteins, Mrp and Emm, which are immunologically unrelated. These two proteins bind different ligands that have been implicated in phagocytosis resistance: Mrp binds fibrinogen and Emm binds the complement inhibitor C4BP. Using a clinical isolate of the common serotype 22, we created mutants affected in the mrp and emm genes and characterized them in phagocytosis experiments and by electron microscopy. A double mutant mrp-emm- showed strongly decreased resistance to phagocytosis, while mrp- and emm- single mutants grew well in blood. However, optimal growth required the expression of both Mrp and Emm. Experiments in which coagulation was inhibited using the specific thrombin inhibitor, hirudin, rather than heparin, indicated that Emm is more important than Mrp for resistance to phagocytosis. Tuftlike surface structures typical for S. pyogenes were still present in the mrp-emm- double mutant, but not in a mutant affected in the regulatory gene mga, indicating that the presence of these surface structures is not directly correlated to phagocytosis resistance. Our data imply that OF+ strains of S. pyogenes express two antiphagocytic M proteins with different ligand-binding properties.
Insights
Group A Streptococcus uses two M-like proteins, Mrp and Emm, to resist phagocytosis. Optimal bacterial growth in blood requires both proteins, with Emm playing a crucial role.
Area of Science:
- Microbiology
- Immunology
- Bacterial Pathogenesis
Background:
- Streptococcus pyogenes (group A Streptococcus) resists phagocytosis and grows in blood.
- M proteins are key virulence factors, but the roles of multiple M-like proteins are unclear.
- OF+ S. pyogenes strains express two M-like proteins, Mrp and Emm, binding different ligands.
Purpose of the Study:
- To investigate the roles of Mrp and Emm in S. pyogenes phagocytosis resistance.
- To determine the contribution of each M-like protein to bacterial survival in human blood.
- To elucidate the functional relationship between Mrp and Emm in virulence.
Main Methods:
- Construction and characterization of mrp and emm single and double mutants of S. pyogenes.
- Phagocytosis assays using clinical isolates and human blood.
- Electron microscopy to examine surface structures.
- Inhibition of coagulation using hirudin.
Main Results:
- A double mrp-emm- mutant showed significantly reduced resistance to phagocytosis.
- Single mrp- and emm- mutants exhibited good growth in blood, but optimal growth required both.
- Emm appeared more critical than Mrp for phagocytosis resistance, especially when coagulation was inhibited.
- Surface tuft-like structures were not directly correlated with phagocytosis resistance.
Conclusions:
- OF+ S. pyogenes strains utilize two distinct antiphagocytic M-like proteins, Mrp and Emm.
- Both Mrp and Emm contribute to S. pyogenes virulence, with distinct ligand-binding properties.
- The combined action of Mrp and Emm is essential for optimal resistance to phagocytosis and survival in blood.