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Updated: Aug 27, 2025

Cefoperazone-treated Mouse Model of Clinically-relevant Clostridium difficile Strain R20291
Published on: December 10, 2016
Clostridium perfringens α-toxin up-regulates plasma membrane CD11b expression on murine neutrophils by changing
Masaya Takehara1, Keiko Kobayashi1, Masahiro Nagahama1
1Department of Microbiology, Faculty of Pharmaceutical Sciences, Tokushima Bunri University, Yamashiro-cho, Tokushima 770-8514, Japan.
Abstract:
Gas gangrene caused by Clostridium perfringens type A infection is a highly lethal infection of soft tissue characterized by rapid spread of tissue necrosis. This tissue destruction is related to profound attenuation of blood flow accompanied by formation of platelet-leukocyte aggregates in the blood vessels. Several studies have identified α-toxin, which has both sphingomyelinase and phospholipase C activities, as a major virulence factor in the aggregate formation via activation of the platelet gpIIbIIIa. Here, we show that α-toxin greatly and rapidly increases plasma membrane localization of CD11b, which binds to the platelet gpIIbIIIa via fibrinogen, in mouse neutrophils. Interestingly, short-term treatment of α-toxin has little effect on gene expression profiles in neutrophils, and the toxin does not change the total protein expression levels of CD11b in whole cell lysates. The following analysis demonstrated that CD11b localizes to intracellular vesicles in intact cells, but the localization changed to the cytoplasmic membrane in α-toxin-treated cells. These results suggest that CD11b is recruited to the cytoplasmic membrane by α-toxin. Previously, we reported that α-toxin promotes the formation of ceramide by its sphingomyelinase activity in mouse neutrophils. Interestingly, a synthetic cell-permeable ceramide analog, C2-ceramide, increases plasma membrane localization of CD11b, suggesting that ceramide production by α-toxin recruits CD11b to the cytoplasmic membrane to promote platelet-leukocyte aggregation. Together, our results illustrate that the increase of cell membrane CD11b expression by α-toxin might be crucial for the pathogenesis of C. perfringens to promote formation of platelet-leukocyte aggregates, leading to rapid tissue necrosis due to ischemia.
Insights
Clostridium perfringens alpha-toxin promotes platelet-leukocyte aggregation by increasing CD11b on neutrophil membranes. This mechanism may drive tissue necrosis in gas gangrene by causing ischemia.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Gas gangrene, caused by Clostridium perfringens type A, is a severe soft tissue infection.
- Tissue necrosis in gas gangrene is linked to reduced blood flow and platelet-leukocyte aggregates.
- Alpha-toxin (toxin) is a key virulence factor implicated in aggregate formation via platelet gpIIbIIIa activation.
Purpose of the Study:
- To investigate the mechanism by which alpha-toxin promotes platelet-leukocyte aggregation.
- To determine the role of CD11b localization in alpha-toxin-induced aggregation.
- To explore the involvement of ceramide in alpha-toxin's effects on neutrophils.
Main Methods:
- Treatment of mouse neutrophils with purified alpha-toxin.
- Analysis of CD11b plasma membrane localization using flow cytometry and microscopy.
- Assessment of gene expression profiles and total CD11b protein levels.
- Investigation using a synthetic cell-permeable ceramide analog (C2-ceramide).
Main Results:
- Alpha-toxin rapidly increased CD11b plasma membrane localization in neutrophils.
- Short-term toxin exposure did not significantly alter gene expression or total CD11b protein.
- CD11b translocated from intracellular vesicles to the cytoplasmic membrane upon toxin treatment.
- Alpha-toxin-induced ceramide production correlated with CD11b recruitment to the membrane.
- C2-ceramide mimicked the effect of alpha-toxin on CD11b localization.
Conclusions:
- Alpha-toxin recruits CD11b to the neutrophil cytoplasmic membrane, potentially via ceramide production.
- Increased CD11b expression on the cell surface promotes platelet-leukocyte aggregation.
- This mechanism is crucial for Clostridium perfringens pathogenesis, leading to ischemia and tissue necrosis.

