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Updated: May 27, 2026

Quantifying the Cytotoxicity of Staphylococcus aureus Against Human Polymorphonuclear Leukocytes
Published on: January 3, 2020
Staphylococcus aureus α-toxin triggers the synthesis of B-cell lymphoma 3 by human platelets
Sebastian Schubert1, Hansjörg Schwertz, Andrew S Weyrich
1Department of Medicine III, Martin Luther University, Halle, Saale, Germany. schubert-sebastian@gmx.net
Abstract:
The frequency and severity of bacteremic infections has increased over the last decade and bacterial endovascular infections (i.e., sepsis or endocarditis) are associated with high morbidity and mortality. Bacteria or secreted bacterial products modulate platelet function and, as a result, affect platelet accumulation at sites of vascular infection and inflammation. However, whether bacterial products regulate synthetic events in platelets is not known. In the present study, we determined if prolonged contact with staphylococcal α-toxin signals platelets to synthesize B-cell lymphoma (Bcl-3), a protein that regulates clot retraction in murine and human platelets. We show that α-toxin induced α(IIb)β(3)-dependent aggregation (EC(50) 2.98 µg/mL ± 0.64 µg/mL) and, over time, significantly altered platelet morphology and stimulated de novo accumulation of Bcl-3 protein in platelets. Adherence to collagen or fibrinogen also increased the expression of Bcl-3 protein by platelets. α-toxin altered Bcl-3 protein expression patterns in platelets adherent to collagen, but not fibrinogen. Pretreatment of platelets with inhibitors of protein synthesis or the mammalian Target of Rapamycin (mTOR) decreased Bcl-3 protein expression in α-toxin stimulated platelets. In conclusion, Staphylococcusaureus-derived α-toxin, a pore forming exotoxin, exerts immediate (i.e., aggregation) and prolonged (i.e., protein synthesis) responses in platelets, which may contribute to increased thrombotic events associated with gram-positive sepsis or endocarditis.
Insights
Staphylococcal alpha-toxin, a bacterial product, triggers platelet aggregation and stimulates the synthesis of Bcl-3 protein. This protein synthesis response may increase thrombotic events in gram-positive sepsis.
Area of Science:
- Hematology
- Microbiology
- Immunology
Background:
- Bacteremic infections, including sepsis and endocarditis, are increasingly severe and linked to high mortality.
- Bacterial products influence platelet function and accumulation at infection sites, but their role in platelet synthetic events remains unclear.
Purpose of the Study:
- To investigate whether staphylococcal alpha-toxin stimulates platelets to synthesize B-cell lymphoma (Bcl-3) protein.
- To determine the mechanisms and consequences of alpha-toxin-induced Bcl-3 protein synthesis in platelets.
Main Methods:
- Platelet aggregation assays were performed using staphylococcal alpha-toxin.
- Bcl-3 protein accumulation was measured in platelets exposed to alpha-toxin, collagen, or fibrinogen.
- The role of protein synthesis inhibitors and mTOR signaling was assessed.
Main Results:
- Staphylococcal alpha-toxin induced alpha(IIb)beta(3)-dependent platelet aggregation.
- Prolonged exposure to alpha-toxin stimulated de novo synthesis of Bcl-3 protein in platelets.
- Platelet adherence to collagen, but not fibrinogen, altered alpha-toxin's effect on Bcl-3 expression.
- Inhibitors of protein synthesis and mTOR signaling reduced alpha-toxin-induced Bcl-3 expression.
Conclusions:
- Staphylococcus aureus alpha-toxin induces both immediate (aggregation) and prolonged (Bcl-3 protein synthesis) responses in platelets.
- These platelet responses may contribute to thrombotic events in gram-positive sepsis and endocarditis.
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