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Sphingosine kills bacteria by binding to cardiolipin
Rabea Verhaegh1, Katrin Anne Becker1, Michael J Edwards2
1Department of Molecular Biology, University Clinic, University of Duisburg-Essen, Essen, Germany.
Insights
Sphingosine rapidly kills bacteria like Pseudomonas aeruginosa and Staphylococcus aureus by permeabilizing their membranes. This bactericidal activity requires sphingosine
Area of Science:
- Microbiology
- Biochemistry
- Cell Biology
Background:
- Sphingosine, a sphingoid base, exhibits bactericidal activity against pathogens.
- Sphingosine is present in airway epithelial cells, contributing to respiratory defense.
- Previous work established sphingosine's role in airway immunity.
Purpose of the Study:
- To elucidate the rapid bactericidal mechanism of sphingosine.
- To identify the molecular interactions responsible for sphingosine's antimicrobial effects.
- To investigate the role of specific sphingosine chemical groups in bacterial killing.
Main Methods:
- Lipid-binding assays
- Cell biology assays
- Genetic experiments involving cardiolipin synthase knockout strains
- In vitro and in vivo antimicrobial testing
Main Results:
- Sphingosine rapidly permeabilizes bacterial plasma membranes within minutes.
- This permeabilization leads to ATP and metabolic activity loss, causing rapid bacterial death.
- The protonated amino group (NH2) of sphingosine is essential for its bactericidal activity.
- Sphingosine's NH2 group binds to negatively charged cardiolipin in bacterial membranes.
- Bacteria lacking cardiolipin synthase are resistant to sphingosine.
Conclusions:
- Sphingosine kills bacteria by targeting cardiolipin in the bacterial plasma membrane.
- Binding of sphingosine to cardiolipin induces membrane clustering, leading to permeabilization and cell death.
- This mechanism highlights sphingosine as a key component of innate immunity against bacterial pathogens.
Abstract:
Sphingosine is a long-chain sphingoid base that has been shown to have bactericidal activity against many pathogens, including Pseudomonas aeruginosa, Staphylococcus aureus, and Escherichia coli We have previously demonstrated that sphingosine is present in nasal, tracheal, and bronchial epithelial cells and constitutes a central element of the defense of the airways against bacterial pathogens. Here, using assorted lipid-binding and cell biology assays, we demonstrate that exposing P. aeruginosa and S. aureus cells to sphingosine results in a very rapid, i.e. within minutes, permeabilization of the bacterial plasma membrane, resulting in leakiness of the bacterial cells, loss of ATP, and loss of bacterial metabolic activity. These alterations rapidly induced bacterial death. Mechanistically, we demonstrate that the presence of the protonated NH2 group in sphingosine, which is an amino-alcohol, is required for sphingosine's bactericidal activity. We also show that the protonated NH2 group of sphingosine binds to the highly negatively-charged lipid cardiolipin in bacterial plasma membranes. Of note, this binding was required for bacterial killing by sphingosine, as revealed by genetic experiments indicating that E. coli or P. aeruginosa strains that lack cardiolipin synthase are resistant to sphingosine, both in vitro and in vivo We propose that binding of sphingosine to cardiolipin clusters cardiolipin molecules in the plasma membrane of bacteria. This clustering results in the formation of gel-like or even crystal-like structures in the bacterial plasma membrane and thereby promotes rapid permeabilization of the plasma membrane and bacterial cell death.
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