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PMID: 5674051 Published · ppublish English Journal Article

Reversal of the vancomycin inhibition of peptidoglycan synthesis by cell walls.

Journal of bacteriology ·Vol. 96 ·No. 2 ·1968-08-00 ·Pages 374-82

Sinha RK, Neuhaus RC

Abstract

Addition of cell walls to the peptidoglycan synthetase-acceptor system containing vancomycin (50 mug/ml) prevented the inhibition by the antibiotic. In addition, the inhibition of incorporation of [(14)C]muramyl-pentapeptide into peptidoglycan in the presence of vancomycin was reversed by the addition of cell walls to the assay mixture at 60 min. Cell walls previously saturated with vancomycin lost their ability to reverse the inhibition by the antibiotic. The inhibition of peptidoglycan synthesis by ristocetin was partially reversed by the addition of cell walls. The initial stage in peptidoglycan synthesis is catalyzed by phospho-N-acetyl(NAc)muramyl-pentapeptide translocase (uridine 5'-phosphate) according to the reaction: UDP-NAc-muramyl-pentapeptide + acceptor right arrow over left arrow acceptor-phospho-NAc-muramyl-pentapeptide + UMP where acceptor is C(55)-isoprenoid alcohol phosphate. Vancomycin stimulates the transfer of phospho-NAc-muramyl-pentapeptide to the acceptor, and the addition of cell walls to this assay mixture prevented the stimulation of transfer. In addition to the transfer reaction, the enzyme catalyzes the exchange of [(3)H]uridine monophosphate (UMP) with UDP-NAc-muramyl-pentapeptide. The exchange reaction is effectively inhibited by vancomycin. For example, 60 mug of vancomycin per ml inhibited the rate of exchange by 50%. Addition of cell walls restored the exchange of UMP with the UMP moiety of UDP-NAc-muramyl-pentapeptide. Thus, cell walls appeared to have a higher affinity for vancomycin than did either the peptidoglycan synthetase-acceptor system or phospho-NAc-muramyl-pentapeptide translocase. These results provide support for the proposal made by Best and Durham that the effective binding of vancomycin to the cell wall could result in the inhibition of transfer of membrane-associated peptidoglycan chains to the growing wall.

MeSH Terms
Adsorption Alanine/metabolism Amino Sugars/metabolism Bacitracin/pharmacology Carbon Isotopes Cell Wall/analysis,metabolism Cell-Free System Lipid Metabolism Magnesium/pharmacology Manganese/pharmacology Micrococcus/drug effects Mucoproteins/biosynthesis Peptide Biosynthesis Peptides/metabolism Phosphotransferases/metabolism Ristocetin/pharmacology Staphylococcus/drug effects Vancomycin/pharmacology
Chemicals
Amino Sugars Carbon Isotopes Mucoproteins Peptides Ristocetin Bacitracin Manganese Vancomycin Phosphotransferases Magnesium Alanine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Sinha R K
Neuhaus R C
References (22)
22 references, click to expand
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Article Info
Journal
Journal of bacteriology
Abbr.
J Bacteriol
ISSN
0021-9193
Published
1968-08-00
Pages
374-82
Language
English
Region
United States
NLM ID
2985120R
PMCID
PMC252308
Subset
IM
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