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Published on: February 19, 2019
Functional characteristics of the Staphylococcus aureus δ-toxin allelic variant G10S
Gordon Y C Cheung1, Anthony J Yeh1, Dorothee Kretschmer2
1Pathogen Molecular Genetics Section, Laboratory of Bacteriology, National Institute of Allergy and Infectious Diseases, The National Institutes of Health, Bethesda, MD 20892, United States of America.
Abstract:
Staphylococcus aureus δ-toxin is a member of the phenol-soluble modulin (PSM) peptide family. PSMs have multiple functions in staphylococcal pathogenesis; for example, they lyse red and white blood cells and trigger inflammatory responses. Compared to other PSMs, δ-toxin is usually more strongly expressed but has only moderate cytolytic capacities. The amino acid sequences of S. aureus PSMs are well conserved with two exceptions, one of which is the δ-toxin allelic variant G10S. This variant is a characteristic of the subspecies S. argenteus and S. aureus sequence types ST1 and ST59, the latter representing the most frequent cause of community-associated infections in Asia. δ-toxin G10S and strains expressing that variant from plasmids or the genome had significantly reduced cytolytic and pro-inflammatory capacities, including in a strain background with pronounced production of other PSMs. However, in murine infection models, isogenic strains expressing the two δ-toxin variants did not cause measurable differences in disease severity. Our findings indicate that the widespread G10S allelic variation of the δ-toxin locus has a significant impact on key pathogenesis mechanisms, but more potent members of the PSM peptide family may overshadow that impact in vivo.
Insights
The Staphylococcus aureus δ-toxin variant G10S has reduced cytolytic and inflammatory functions. However, this variant did not alter disease severity in mouse models, suggesting other phenol-soluble modulins (PSMs) may compensate in vivo.
Area of Science:
- Microbiology
- Immunology
- Molecular Biology
Background:
- Staphylococcus aureus phenol-soluble modulins (PSMs) are key virulence factors involved in cell lysis and inflammation.
- δ-toxin, a member of the PSM family, is highly expressed but possesses moderate cytolytic activity.
- An allelic variant, δ-toxin G10S, is prevalent in specific S. aureus lineages, including those causing community-associated infections.
Purpose of the Study:
- To investigate the functional impact of the δ-toxin G10S allelic variant on S. aureus pathogenesis.
- To compare the cytolytic and pro-inflammatory capacities of δ-toxin G10S with the wild-type variant.
- To evaluate the in vivo relevance of δ-toxin G10S variation in a murine infection model.
Main Methods:
- Comparative analysis of δ-toxin G10S and wild-type variants.
- Assessment of cytolytic activity against red and white blood cells.
- Measurement of pro-inflammatory cytokine induction.
- Evaluation of disease severity in murine infection models using isogenic S. aureus strains.
Main Results:
- δ-toxin G10S exhibited significantly reduced cytolytic and pro-inflammatory capacities compared to the wild-type.
- These reductions were observed even in strain backgrounds with high production of other PSMs.
- Isogenic strains expressing either δ-toxin variant did not result in measurable differences in disease severity in murine models.
Conclusions:
- The G10S allelic variation in δ-toxin significantly impacts its intrinsic virulence functions.
- The in vivo relevance of this variation may be masked by the potent activities of other PSMs in S. aureus.
- This finding highlights the complex interplay of virulence factors in staphylococcal pathogenesis.
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