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Updated: Feb 5, 2026

Quantifying the Cytotoxicity of Staphylococcus aureus Against Human Polymorphonuclear Leukocytes
Published on: January 3, 2020
Comparative Secretome Analyses of Human and Zoonotic Staphylococcus aureus Isolates CC8, CC22, and CC398
Tobias Busche1, Mélanie Hillion2, Vu Van Loi2
1Institute for Biology-Microbiology, Freie Universität Berlin, D-14195 Berlin, Germany; Center for Biotechnology, Bielefeld University, D-33594 Bielefeld, Germany.
Abstract:
The spread of methicillin-resistant Staphylococcus aureus (MRSA) in the community, hospitals and in livestock is mediated by highly diverse virulence factors that include secreted toxins, superantigens, enzymes and surface-associated adhesins allowing host adaptation and colonization. Here, we combined proteogenomics, secretome and phenotype analyses to compare the secreted virulence factors in selected S. aureus isolates of the dominant human- and livestock-associated genetic lineages CC8, CC22, and CC398. The proteogenomic comparison revealed 2181 core genes and 1306 accessory genes in 18 S. aureus isolates reflecting the high genome diversity. Using secretome analysis, we identified 869 secreted proteins with 538 commons in eight isolates of CC8, CC22, and CC398. These include 64 predicted extracellular and 37 cell surface proteins that account for 82.4% of total secretome abundance. Among the top 10 most abundantly secreted virulence factors are the major autolysins (Atl, IsaA, Sle1, SAUPAN006375000), lipases and lipoteichoic acid hydrolases (Lip, Geh, LtaS), cytolytic toxins (Hla, Hlb, PSMβ1) and proteases (SspB). The CC398 isolates showed lower secretion of cell wall proteins, but higher secretion of α- and β-hemolysins (Hla, Hlb) which correlated with an increased Agr activity and strong hemolysis. CC398 strains were further characterized by lower biofilm formation and staphyloxanthin levels because of decreased SigB activity. Overall, comparative secretome analyses revealed CC8- or CC22-specific enterotoxin and Spl protease secretion as well as Agr- and SigB-controlled differences in exotoxin and surface protein secretion between human-specific and zoonotic lineages of S. aureus.
Insights
This study compares secreted virulence factors in methicillin-resistant Staphylococcus aureus (MRSA) lineages. Livestock-associated MRSA (CC398) shows higher hemolysin secretion and lower biofilm formation than human-associated strains.
Area of Science:
- Microbiology
- Genomics
- Proteomics
Background:
- Methicillin-resistant Staphylococcus aureus (MRSA) spreads via diverse virulence factors, including toxins and adhesins.
- Understanding secreted virulence factors is crucial for controlling MRSA in communities, hospitals, and livestock.
Purpose of the Study:
- To compare secreted virulence factors across dominant human- and livestock-associated MRSA genetic lineages (CC8, CC22, CC398).
- To investigate the proteogenomic and secretomic differences contributing to MRSA host adaptation and colonization.
Main Methods:
- Combined proteogenomic, secretome, and phenotype analyses of selected MRSA isolates.
- Identified and quantified secreted proteins, including extracellular and cell surface proteins.
- Assessed Agr and SigB activity, hemolysis, and biofilm formation.
Main Results:
- Identified 869 secreted proteins, with 538 common across CC8, CC22, and CC398 lineages.
- Top secreted virulence factors include autolysins, lipases, cytolytic toxins, and proteases.
- CC398 isolates exhibited higher hemolysin secretion (correlated with Agr activity) and lower biofilm formation (correlated with SigB activity).
Conclusions:
- Comparative secretome analysis reveals lineage-specific secretion patterns of virulence factors.
- Agr and SigB activity significantly influence exotoxin and surface protein secretion in human-specific and zoonotic MRSA lineages.
- These findings provide insights into MRSA adaptation and host colonization mechanisms.
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