Mechanism of action of peptidoglycan O-acetyltransferase B involves a Ser-His-Asp catalytic triad

Patrick J. Moynihan, Anthony J Clarke

Research output: Contribution to journalArticlepeer-review

17 Citations (Scopus)

Abstract

The O-acetylation of the essential cell wall polymer peptidoglycan is essential in many bacteria for their integrity and survival, and it is catalyzed by peptidoglycan O-acetlytransferase B (PatB). Using PatB from Neisseria gonorrhoeae as the model, we have shown previously that the enzyme has specificity for polymeric muropeptides that possess tri- and tetrapeptide stems and that rates of reaction increase with increasing degrees of polymerization. Here, we present the catalytic mechanism of action of PatB, the first to be described for an O-acetyltransferase of any bacterial exopolysaccharide. The influence of pH on PatB activity was investigated, and pKa values of 6.4-6.45 and 6.25-6.35 for the enzyme-substrate complex (kcat vs pH) and the free enzyme (kcat·KM(-1) vs pH), respectively, were determined for the respective cosubstrates. The enzyme is partially inactivated by sulfonyl fluorides but not by EDTA, suggesting the participation of a serine residue in its catalytic mechanism. Alignment of the known and hypothetical PatB amino acid sequences identified Ser133, Asp302, and His305 as three invariant amino acid residues that could potentially serve as a catalytic triad. Replacement of Asp302 with Ala resulted in an enzyme with less than 20% residual activity, whereas activity was barely detectable with (His305 → Ala)PatB and (Ser133 → Ala)PatB was totally inactive. The reaction intermediate of the transferase reaction involving acetyl- and propionyl-acyl donors was trapped on both the wild-type and (Asp302 → Ala) enzymes and LC-MS/MS analysis of tryptic peptides identified Ser133 as the catalytic nucleophile. A transacetylase mechanism is proposed based on the mechanism of action of serine esterases.

Original languageEnglish
Pages (from-to)6243-6251
Number of pages9
JournalBiochemistry
Volume53
Issue number39
DOIs
Publication statusPublished - 12 Sept 2014

Keywords

  • Acyltransferases
  • Amino Acid Sequence
  • Aspartic Acid
  • Bacterial Proteins
  • Biocatalysis
  • Chromatography, Liquid
  • Electrophoresis, Polyacrylamide Gel
  • Enzyme Stability
  • Histidine
  • Hydrogen-Ion Concentration
  • Kinetics
  • Mass Spectrometry
  • Models, Molecular
  • Mutation, Missense
  • Neisseria gonorrhoeae
  • Oligopeptides
  • Peptidoglycan
  • Polysaccharides, Bacterial
  • Protein Binding
  • Protein Structure, Tertiary
  • Serine
  • Substrate Specificity
  • Journal Article
  • Research Support, Non-U.S. Gov't

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