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Published on: September 14, 2019
Roles of minor pilin subunits Spy0125 and Spy0130 in the serotype M1 Streptococcus pyogenes strain SF370
Wendy D Smith1, Jonathan A Pointon, Emily Abbot
1Institute for Cell and Molecular Biosciences and Institute for Cellular Medicine, Newcastle University, Framlington Place, Newcastle upon Tyne NE2 4HH, United Kingdom.
Abstract:
Adhesive pili on the surface of the serotype M1 Streptococcus pyogenes strain SF370 are composed of a major backbone subunit (Spy0128) and two minor subunits (Spy0125 and Spy0130), joined covalently by a pilin polymerase (Spy0129). Previous studies using recombinant proteins showed that both minor subunits bind to human pharyngeal (Detroit) cells (A. G. Manetti et al., Mol. Microbiol. 64:968-983, 2007), suggesting both may act as pilus-presented adhesins. While confirming these binding properties, studies described here indicate that Spy0125 is the pilus-presented adhesin and that Spy0130 has a distinct role as a wall linker. Pili were localized predominantly to cell wall fractions of the wild-type S. pyogenes parent strain and a spy0125 deletion mutant. In contrast, they were found almost exclusively in culture supernatants in both spy0130 and srtA deletion mutants, indicating that the housekeeping sortase (SrtA) attaches pili to the cell wall by using Spy0130 as a linker protein. Adhesion assays with antisera specific for individual subunits showed that only anti-rSpy0125 serum inhibited adhesion of wild-type S. pyogenes to human keratinocytes and tonsil epithelium to a significant extent. Spy0125 was localized to the tip of pili, based on a combination of mutant analysis and liquid chromatography-tandem mass spectrometry analysis of purified pili. Assays comparing parent and mutant strains confirmed its role as the adhesin. Unexpectedly, apparent spontaneous cleavage of a labile, proline-rich (8 of 14 residues) sequence separating the N-terminal approximately 1/3 and C-terminal approximately 2/3 of Spy0125 leads to loss of the N-terminal region, but analysis of internal spy0125 deletion mutants confirmed that this has no significant effect on adhesion.
Insights
Streptococcus pyogenes uses Spy0125 as its primary adhesin on pili, while Spy0130 acts as a wall linker protein. This clarifies the distinct roles of pilus subunits in bacterial adhesion and cell wall attachment.
Area of Science:
- Microbiology
- Molecular Biology
- Bacterial Pathogenesis
Background:
- Adhesive pili of serotype M1 Streptococcus pyogenes are crucial for host cell interaction.
- Previous research suggested both Spy0125 and Spy0130 minor subunits might function as adhesins.
- The precise roles of pilus subunits in Streptococcus pyogenes adhesion and cell wall anchoring were not fully elucidated.
Purpose of the Study:
- To determine the specific function of Spy0125 and Spy0130 in Streptococcus pyogenes pilus assembly and adhesion.
- To identify the adhesin subunit presented on the pilus surface and the role of other subunits in cell wall attachment.
- To investigate the mechanism of pilus anchoring to the bacterial cell wall.
Main Methods:
- Construction and analysis of Streptococcus pyogenes deletion mutants for spy0125, spy0130, and srtA.
- Localization studies of pili in cell wall fractions and culture supernatants.
- Adhesion assays using wild-type and mutant strains with human keratinocytes and tonsil epithelium.
- Liquid chromatography-tandem mass spectrometry (LC-MS/MS) analysis of purified pili.
Main Results:
- Spy0125 functions as the primary pilus-presented adhesin mediating Streptococcus pyogenes attachment to host cells.
- Spy0130 serves as a crucial wall linker protein, essential for anchoring pili to the cell wall via the sortase A (SrtA) enzyme.
- Mutants lacking spy0130 or srtA showed pili localized to culture supernatants, indicating impaired cell wall attachment.
Conclusions:
- Spy0125 is the key adhesin located at the pilus tip, responsible for initiating host cell interactions.
- Spy0130 acts as a pilus-to-cell wall linker, with SrtA mediating this anchoring process.
- These findings clarify the distinct functional roles of Streptococcus pyogenes pilus subunits in pathogenesis.
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