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Updated: Jul 4, 2026

Monitoring the Assembly of a Secreted Bacterial Virulence Factor Using Site-specific Crosslinking
Published on: December 17, 2013
Sortase A utilizes an ancillary protein anchor for efficient cell wall anchoring of pili in Streptococcus agalactiae
Angela H Nobbs1, Roberto Rosini, C Daniela Rinaudo
1Novartis Vaccines, Via Fiorentina 1, 53100 Siena, Italy.
Insights
Sortase A (SrtA) in Streptococcus agalactiae anchors pili to the cell wall, a crucial step for virulence. This study reveals SrtA
Area of Science:
- Microbiology
- Molecular Biology
- Vaccinology
Background:
- Streptococcus agalactiae (group B Streptococcus [GBS]) causes neonatal sepsis and meningitis.
- Pili are key virulence factors and potential vaccine targets in GBS.
- Pilus assembly involves pilus islands (PI), structural subunits, and sortases (SrtC).
Purpose of the Study:
- To elucidate the role of the housekeeping sortase A (SrtA) in GBS pilus assembly and cell wall anchoring.
- To understand the specific mechanisms of pilus anchoring to the bacterial cell surface.
Main Methods:
- Analysis of pilus expression and cell wall anchoring in srtA deletion mutants.
- Systematic deletion of genes within the PI-2a locus.
- Assessment of pilus localization and release using detergent treatment.
Main Results:
- SrtA deletion did not affect pilus polymerization but reduced cell surface expression.
- Pili accumulated in the supernatant and were easily released from srtA mutants, indicating impaired cell wall anchoring.
- Deletion of GBS150 or its incorporating SrtC mimicked the srtA mutant phenotype, identifying GBS150 as the anchor protein.
Conclusions:
- PI sortases (SrtC) are responsible for pilus polymerization.
- SrtA is essential for the covalent attachment of pili to the GBS cell wall.
- Ancillary subunit GBS150 acts as the anchor protein for SrtA-mediated pilus anchoring.
Abstract:
Pili are putative virulence factors and promising vaccine candidates in Streptococcus agalactiae (group B Streptococcus [GBS]) infection, a leading cause of neonatal sepsis and meningitis. The genes necessary for pilus synthesis and assembly are clustered in pilus islands (PI). Each gene encodes three structural subunits (a backbone and two ancillary proteins) bearing a C-terminal LPXTG motif and two subfamily C sortases (SrtC) involved in covalent polymerization of the subunits. GBS strains also possess the conserved "housekeeping" sortase A (SrtA), but its role in pilus assembly is unclear. To address this issue, pilus expression and cell wall anchoring were analyzed in srtA deletion mutants. Loss of SrtA did not affect pilus polymerization. However, pilus expression on the cell surface was reduced, and pili accumulated in the culture supernatant. Furthermore, cell-associated pili could be readily released by detergent treatment, indicating that SrtA is involved in covalent anchoring of pili to the cell wall. When each of the genes comprising PI-2a was systematically deleted, only the absence of ancillary subunit GBS150 or the SrtC required for incorporation of GBS150 into pili mimicked the srtA mutant phenotype. Thus, from these data a model for GBS pilus assembly can be proposed in which PI sortases are responsible for polymerization of the pilus structure, while SrtA is required to covalently attach it to the cell wall, utilizing ancillary pilus subunit GBS150 as the anchor protein.
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