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alpha-Enolase of Streptococcus pneumoniae is a plasmin(ogen)-binding protein displayed on the bacterial cell surface
S Bergmann1, M Rohde, G S Chhatwal
1Department of Microbial Pathogenicity, GBF-German Research Centre for Biotechnology, Mascheroder Weg 1, D-38124 Braunschweig, Germany.
Abstract:
Binding of human plasminogen to Streptococcus pneumoniae and its subsequent activation promotes penetration of bacteria through reconstituted basement membranes. In this study, we have characterized a novel pneumococcal surface protein with a molecular mass of 47 kDa, designated Eno, which specifically binds human plasmin(ogen), exhibits alpha-enolase activity and is necessary for viability. Using enzyme assays, we have confirmed the alpha-enolase activity of both pneumococcal surface-displayed Eno and purified recombinant Eno protein. Immunoelectron microscopy indicated the presence of Eno in the cytoplasm as well as on the surface of encapsulated and unencapsulated pneumococci. Plasminogen-binding activity was demonstrated with whole pneumococcal cells and purified Eno protein. Binding of activated plasminogen was also shown for Eno; however, the affinity for plasmin is significantly reduced compared with plasminogen. Results from competitive inhibition assays indicate that binding is mediated through the lysine binding sites in plasmin(ogen). Carboxypeptidase B treatment and amino acid substitutions of the C-terminal lysyl residues of Eno indicated that the C-terminal lysine is pivotal for plasmin(ogen)-binding activity. Eno is ubiquitously distributed among pneumococcal serotypes, and binding experiments suggested the reassociation of secreted Eno to the bacterial cell surface. The reassociation was also confirmed by immunoelectron microscopy. The results suggest a mechanism of plasminogen activation for human pathogens that might contribute to their virulence potential in invasive infectious processes.
Insights
Streptococcus pneumoniae uses a novel surface protein, Eno, to bind and activate human plasminogen. This interaction is crucial for bacterial viability and may enhance virulence in invasive infections.
Area of Science:
- Microbiology
- Molecular Biology
- Pathogenesis
Background:
- Streptococcus pneumoniae utilizes human plasminogen binding for invasion.
- A 47 kDa pneumococcal surface protein, Eno, is essential for bacterial viability.
Purpose of the Study:
- To characterize the novel pneumococcal surface protein Eno.
- To investigate Eno's role in binding and activating human plasminogen.
- To elucidate the mechanism of plasminogen binding by Eno.
Main Methods:
- Enzyme assays to confirm alpha-enolase activity.
- Immunoelectron microscopy to determine Eno localization.
- Binding assays using whole cells and purified Eno.
- Competitive inhibition assays and site-directed mutagenesis.
Main Results:
- Eno exhibits alpha-enolase activity and binds human plasminogen via lysine binding sites.
- The C-terminal lysine of Eno is critical for plasminogen binding.
- Eno is present on the bacterial surface and can reassociate after secretion.
Conclusions:
- Eno is a multifunctional protein involved in plasminogen binding and activation.
- This interaction may contribute to Streptococcus pneumoniae virulence.
- Eno represents a potential target for therapeutic intervention.