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Updated: Mar 6, 2026

Invasion of Human Cells by a Bacterial Pathogen
Published on: March 21, 2011
Variable region in streptococcal M-proteins provides stable binding with host fibrinogen for plasminogen-mediated
Kristofor Glinton1,2, Julia Beck1,2, Zhong Liang1
1From the W.M. Keck Center for Transgene Research and.
Abstract:
Dimeric M-proteins (M-Prt) in group A Streptococcus pyogenes (GAS) are surface-expressed virulence factors implicated in processes that contribute to the pathogenicity of infection. Sequence analyses of various GAS M-Prts have shown that they contain a highly conserved sortase A-dependent cell wall-anchored C terminus, whereas the surface-exposed N terminus is highly variable, a feature used for identification and serotyping of various GAS strains. This variability also allows for strain-specific responses that suppress host defenses. Previous studies have indeed identified the N-terminal M-Prt B-domain as the site interacting with antiphagocytotic human-host fibrinogen (hFg). Herein, we show that hFg strongly interacts with M-Prts containing highly variable B-domains. We further demonstrate that specific GAS clinical isolates display high affinity for the D-domain of hFg, and this interaction allowed for subsequent surface binding of human-host plasminogen (hPg) to the E-domain of hFg. This GAS surface-bound hPg is then activated by GAS-secreted streptokinase, leading to the generation of an invasive proteolytic bacterial surface. Our results underscore the importance of the human fibrinolytic system in host-pathogen interactions in invasive GAS infections.
Insights
Group A Streptococcus M-proteins (M-Prt) bind human fibrinogen (hFg), enabling bacterial surface plasminogen (hPg) binding. This interaction promotes an invasive, proteolytic bacterial surface during infections.
Area of Science:
- Microbiology
- Molecular Biology
- Immunology
Background:
- Group A Streptococcus (GAS) M-proteins (M-Prt) are surface virulence factors.
- M-protein N-termini are highly variable, influencing host defense suppression.
- The M-protein B-domain binds human fibrinogen (hFg).
Purpose of the Study:
- To investigate the interaction between GAS M-proteins and human fibrinogen.
- To elucidate the mechanism of human plasminogen (hPg) binding to GAS.
- To understand the role of the fibrinolytic system in invasive GAS infections.
Main Methods:
- Sequence analysis of GAS M-proteins.
- In vitro binding assays for M-protein and hFg interactions.
- Assessment of hPg binding to GAS surface.
- Analysis of hPg activation by GAS-secreted streptokinase.
Main Results:
- Highly variable M-protein B-domains show strong interaction with hFg.
- Specific GAS isolates bind hFg's D-domain with high affinity.
- This binding facilitates hPg (E-domain) surface deposition on GAS.
- GAS-bound hPg is activated by streptokinase, creating a proteolytic surface.
Conclusions:
- GAS M-proteins mediate hFg binding, crucial for hPg acquisition.
- The human fibrinolytic system is integral to invasive GAS pathogenesis.
- Targeting this interaction could offer new therapeutic strategies against GAS infections.
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