Staphylococcus aureus sortase a-mediated incorporation of peptides Effect of peptide modification on incorporation

Open Access
Authors
  • S. Hansenová Maňásková
  • K. Nazmi
  • W. van 't Hof
  • A. van Belkum
Publication date 22-01-2016
Journal PLoS ONE
Article number e01474
Volume | Issue number 11 | 1
Number of pages 14
Organisations
  • Faculty of Dentistry (ACTA)
Abstract
The endogenous Staphylococcus aureus sortase A (SrtA) transpeptidase covalently anchors cell wall-anchored (CWA) proteins equipped with a specific recognition motif (LPXTG) into the peptidoglycan layer of the staphylococcal cell wall. Previous in situ experiments have shown that SrtA is also able to incorporate exogenous, fluorescently labelled, synthetic substrates equipped with the LPXTG motif (K(FITC)LPETG-amide) into the bacterial cell wall, albeit at high concentrations of 500 μM to 1 mM. In the present study, we have evaluated the effect of substrate modification on the incorporation efficiency. This revealed that (i) by elongation of LPETG-amide with a sequence of positively charged amino acids, derived from the C-terminal domain of physiological SrtA substrates, the incorporation efficiency was increased by 20-fold at 10 μM, 100 μM and 250 μM; (ii) Substituting aspartic acid (E) for methionine increased the incorporation of the resulting K(FITC)LPMTG-amide approximately three times at all concentrations tested; (iii) conjugation of the lipid II binding antibiotic vancomycin to K(FITC)LPMTG-amide resulted in the same incorporation levels as K(FITC)LPETG-amide, but much more efficient at an impressive 500-fold lower substrate concentration. These newly developed synthetic substrates can potentially find broad applications in for example the in situ imaging of bacteria; the incorporation of antibody recruiting moieties; the targeted delivery and covalent incorporation of antimicrobial compounds into the bacterial cell wall.
Document type Article
Language English
Published at https://doi.org/10.1371/journal.pone.0147401
Downloads
Staphylococcus aureus sortase (Final published version)
Permalink to this page
Back