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Published on: September 8, 2021
Genomic and surface proteomic analysis of the canine pathogen Staphylococcus pseudintermedius reveals proteins that
Jeanette Bannoehr1, Nouri L Ben Zakour, Mark Reglinski
1The Roslin Institute and Centre for Infectious Diseases, University of Edinburgh, Edinburgh, United Kingdom.
Abstract:
Cell wall-associated (CWA) proteins made by Gram-positive pathogens play a fundamental role in pathogenesis. Staphylococcus pseudintermedius is a major animal pathogen responsible for the canine skin disease bacterial pyoderma. Here, we describe the bioinformatic analysis of the family of 18 predicted CWA proteins encoded in the genome of S. pseudintermedius strain ED99 and determine their distribution among a phylogenetically diverse panel of S. pseudintermedius clinical isolates and closely related species of the Staphylococcus intermedius group. In parallel, we employed a proteomic approach to identify proteins presented on the surface of strain ED99 in vitro, revealing a total of 60 surface-localized proteins in one or more phases of growth, including 6 of the 18 genome-predicted CWA proteins. Based on these analyses, we selected two CWA proteins (SpsD and SpsL) encoded by all strains examined and investigated their capacity to mediate adherence to extracellular matrix proteins. We discovered that SpsD and SpsL mediated binding of a heterologous host, Lactococcus lactis, to fibrinogen and fibronectin and that SpsD mediated binding to cytokeratin 10, a major constituent of mammalian skin. Of note, the interaction with fibrinogen was host-species dependent, suggestive of a role for SpsD and SpsL in the host tropism of S. pseudintermedius. Finally, we identified IgG specific for SpsD and SpsL in sera from dogs with bacterial pyoderma, implying that both proteins are expressed during infection. The combined genomic and proteomic approach employed in the current study has revealed novel host-pathogen interactions which represent candidate therapeutic targets for the control of bacterial pyoderma.
Insights
Cell wall-associated proteins SpsD and SpsL from Staphylococcus pseudintermedius mediate bacterial adherence to host tissues like skin and extracellular matrix proteins. These proteins are expressed during canine pyoderma infections, indicating potential therapeutic targets.
Area of Science:
- Microbiology
- Veterinary Dermatology
- Proteomics
Background:
- Gram-positive pathogens utilize cell wall-associated (CWA) proteins for pathogenesis.
- Staphylococcus pseudintermedius causes bacterial pyoderma, a common canine skin disease.
Purpose of the Study:
- To bioinformatically analyze S. pseudintermedius CWA proteins.
- To identify surface-localized proteins and investigate the adherence properties of specific CWA proteins (SpsD and SpsL).
- To explore the role of these proteins in host-pathogen interactions and identify potential therapeutic targets.
Main Methods:
- Bioinformatic analysis of 18 predicted CWA proteins in S. pseudintermedius ED99.
- Proteomic analysis to identify surface-localized proteins in vitro.
- Investigated adherence of a heterologous host (Lactococcus lactis) mediated by SpsD and SpsL to extracellular matrix proteins and cytokeratin 10.
- Serological analysis to detect IgG specific for SpsD and SpsL in canine pyoderma patient sera.
Main Results:
- Identified 60 surface-localized proteins, including 6 of 18 predicted CWA proteins.
- SpsD and SpsL mediated binding to fibrinogen, fibronectin, and cytokeratin 10.
- Fibrinogen binding by SpsD and SpsL was host-species dependent, suggesting a role in host tropism.
- IgG specific for SpsD and SpsL were detected in sera from dogs with bacterial pyoderma, indicating in-vivo expression.
Conclusions:
- SpsD and SpsL are key CWA proteins involved in S. pseudintermedius adherence to host tissues.
- These proteins play a role in host tropism and are expressed during canine pyoderma infections.
- SpsD and SpsL represent promising candidate therapeutic targets for controlling bacterial pyoderma.
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