Affiliation:
1. Department of Microbiology, University of Chicago, Chicago, Illinois 60637
Abstract
ABSTRACT
Staphylococcus simulans
bv. staphylolyticus secretes lysostaphin, a bacteriocin that cleaves pentaglycine cross bridges in the cell wall of
Staphylococcus aureus
. The C-terminal cell wall-targeting domain (CWT) of lysostaphin is required for selective binding of this bacteriocin to
S. aureus
cells; however, the molecular target for this was unknown. We used purified green fluorescent protein fused to CWT (GFP-CWT) to reveal species-specific association of the reporter with staphylococci. GFP-CWT bound
S. aureus
cells as well as purified peptidoglycan sacculi. The addition of cross-linked murein, disaccharides linked to interconnected wall peptides, blocked GFP-CWT binding to staphylococci, whereas murein monomers or lysostaphin-solubilized cell wall fragments did not.
S. aureus
strain Newman variants lacking the capacity for synthesizing polysaccharide capsule (
capFO
), poly-
N
-acetylglucosamine (
icaAC
), lipoprotein (
lgt
), cell wall-anchored proteins (
srtA
), or the glycolipid anchor of lipoteichoic acid (
ypfP
) bound GFP-CWT similar to wild-type staphylococci. A
tagO
mutant strain, defective in the synthesis of polyribitol wall teichoic acid attached to the cell wall envelope, displayed increased GFP-CWT binding. In contrast, a
femAB
mutation, reducing both the amount and the length of peptidoglycan cross-linking (monoglycine cross bridges), showed a dramatic reduction in GFP-CWT binding. Thus, the CWT domain of lysostaphin directs the bacteriocin to cross-linked peptidoglycan, which also serves as the substrate for its glycyl-glycine endopeptidase domain.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
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