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Updated: May 1, 2026

Invasion of Human Cells by a Bacterial Pathogen
Published on: March 21, 2011
Bacteriophage lysin mediates the binding of streptococcus mitis to human platelets through interaction with
Ho Seong Seo1, Yan Q Xiong, Jennifer Mitchell
1Division of Infectious Diseases, Veterans Affairs Medical Center and the University of California, San Francisco, California, United States of America.
Abstract:
The binding of bacteria to human platelets is a likely central mechanism in the pathogenesis of infective endocarditis. We have previously found that platelet binding by Streptococcus mitis SF100 is mediated by surface components encoded by a lysogenic bacteriophage, SM1. We now demonstrate that SM1-encoded lysin contributes to platelet binding via its direct interaction with fibrinogen. Far Western blotting of platelets revealed that fibrinogen was the major membrane-associated protein bound by lysin. Analysis of lysin binding with purified fibrinogen in vitro confirmed that these proteins could bind directly, and that this interaction was both saturable and inhibitable. Lysin bound both the Aalpha and Bbeta chains of fibrinogen, but not the gamma subunit. Binding of lysin to the Bbeta chain was further localized to a region within the fibrinogen D fragment. Disruption of the SF100 lysin gene resulted in an 83+/-3.1% reduction (mean +/- SD) in binding to immobilized fibrinogen by this mutant strain (PS1006). Preincubation of this isogenic mutant with purified lysin restored fibrinogen binding to wild type levels. When tested in a co-infection model of endocarditis, loss of lysin expression resulted in a significant reduction in virulence, as measured by achievable bacterial densities (CFU/g) within vegetations, kidneys, and spleens. These results indicate that bacteriophage-encoded lysin is a multifunctional protein, representing a new class of fibrinogen-binding proteins. Lysin appears to be cell wall-associated through its interaction with choline. Once on the bacterial surface, lysin can bind fibrinogen directly, which appears to be an important interaction for the pathogenesis of endocarditis.
Insights
Bacteriophage lysin from Streptococcus mitis directly binds human fibrinogen, mediating bacterial adherence to platelets. This interaction is crucial for infective endocarditis pathogenesis and bacterial virulence.
Area of Science:
- Microbiology
- Infectious Diseases
- Molecular Biology
Background:
- Bacterial binding to human platelets is key in infective endocarditis.
- Streptococcus mitis SF100 platelet binding involves a lysogenic bacteriophage, SM1.
Purpose of the Study:
- To investigate the role of SM1-encoded lysin in Streptococcus mitis SF100 platelet binding.
- To elucidate the mechanism of lysin-mediated platelet adherence and its contribution to endocarditis.
Main Methods:
- Far Western blotting to identify platelet proteins bound by lysin.
- In vitro binding assays with purified fibrinogen.
- Genetic disruption of the lysin gene in S. mitis SF100.
- Co-infection model of endocarditis in vivo.
Main Results:
- Lysin directly binds human fibrinogen, primarily the Aalpha and Bbeta chains.
- Disruption of the lysin gene significantly reduced bacterial binding to fibrinogen and virulence in an endocarditis model.
- Lysin appears to associate with the bacterial cell wall via choline.
Conclusions:
- Bacteriophage-encoded lysin is a novel fibrinogen-binding protein.
- Lysin-fibrinogen interaction is critical for Streptococcus mitis pathogenesis of infective endocarditis.
- Lysin represents a potential therapeutic target for endocarditis.
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