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Published on: February 25, 2014
Phenol-soluble modulin α and β display divergent roles in mice with staphylococcal septic arthritis
Zhicheng Hu1,2, Pradeep Kumar Kopparapu1, Patrick Ebner3
1Department of Rheumatology and Inflammation Research, Institute of Medicine, Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.
Abstract:
Phenol-soluble modulin α (PSMα) is identified as potent virulence factors in Staphylococcus aureus (S. aureus) infections. Very little is known about the role of PSMβ which belongs to the same toxin family. Here we compared the role of PSMs in S. aureus-induced septic arthritis in a murine model using three isogenic S. aureus strains differing in the expression of PSMs (Newman, Δpsmα, and Δpsmβ). The effects of PSMs on neutrophil NADPH-oxidase activity were determined in vitro. We show that the PSMα activates neutrophils via the formyl peptide receptor (FPR) 2 and reduces their NADPH-oxidase activity in response to the phorbol ester PMA. Despite being a poor neutrophil activator, PSMβ has the ability to reduce the neutrophil activating effect of PSMα and to partly reverse the effect of PSMα on the neutrophil response to PMA. Mice infected with S. aureus lacking PSMα had better weight development and lower bacterial burden in the kidneys compared to mice infected with the parental strain, whereas mice infected with bacteria lacking PSMβ strain developed more severe septic arthritis accompanied with higher IL-6 and KC. We conclude that PSMα and PSMβ play distinct roles in septic arthritis: PSMα aggravates systemic infection, whereas PSMβ protects arthritis development.
Insights
Phenol-soluble modulin α (PSMα) worsens Staphylococcus aureus infections, while PSMβ protects against arthritis development. This study clarifies their distinct roles in S. aureus pathogenesis.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Phenol-soluble modulin α (PSMα) are known virulence factors in Staphylococcus aureus infections.
- The role of the related PSMβ toxin in S. aureus pathogenesis remains largely uncharacterized.
Purpose of the Study:
- To compare the distinct roles of PSMα and PSMβ in S. aureus-induced septic arthritis.
- To investigate the impact of PSMs on neutrophil activity and host immune response.
Main Methods:
- Utilized three isogenic S. aureus strains (Newman, Δpsmα, Δpsmβ) in a murine septic arthritis model.
- Assessed neutrophil NADPH-oxidase activity in vitro following PSM exposure.
- Monitored host parameters including weight, bacterial burden, and cytokine levels (IL-6, KC).
Main Results:
- PSMα activates neutrophils via FPR2, reducing NADPH-oxidase activity. PSMβ partially inhibits PSMα's neutrophil activation.
- Mice infected with Δpsmα showed improved weight and lower kidney bacterial load.
- Mice infected with Δpsmβ exhibited exacerbated septic arthritis with elevated IL-6 and KC.
Conclusions:
- PSMα aggravates systemic S. aureus infection.
- PSMβ plays a protective role in mitigating arthritis development during S. aureus infection.
- PSMα and PSMβ exhibit differential and opposing functions in S. aureus pathogenesis.

