Oxazolidinone Antibiotics Target the P Site on Escherichia coli Ribosomes

Author:

Aoki Hiroyuki1,Ke Lizhu1,Poppe Susan M.2,Poel Toni J.3,Weaver Elizabeth A.3,Gadwood Robert C.3,Thomas Richard C.3,Shinabarger Dean L.2,Ganoza M. Clelia1

Affiliation:

1. Banting and Best Department of Medical Research, Toronto, Ontario M5G 1L6, Canada

2. Infectious Diseases Research

3. Medicinal Chemistry, Pharmacia and Upjohn, Kalamazoo, Michigan 49001-0199

Abstract

ABSTRACT The oxazolidinones are a novel class of antimicrobial agents that target protein synthesis in a wide spectrum of gram-positive and anaerobic bacteria. The oxazolidinone PNU-100766 (linezolid) inhibits the binding of fMet-tRNA to 70S ribosomes. Mutations to oxazolidinone resistance in Halobacterium halobium , Staphylococcus aureus , and Escherichia coli map at or near domain V of the 23S rRNA, suggesting that the oxazolidinones may target the peptidyl transferase region responsible for binding fMet-tRNA. This study demonstrates that the potency of oxazolidinones corresponds to increased inhibition of fMet-tRNA binding. The inhibition of fMet-tRNA binding is competitive with respect to the fMet-tRNA concentration, suggesting that the P site is affected. The fMet-tRNA reacts with puromycin to form peptide bonds in the presence of elongation factor P (EF-P), which is needed for optimum specificity and efficiency of peptide bond synthesis. Oxazolidinone inhibition of the P site was evaluated by first binding fMet-tRNA to the A site, followed by translocation to the P site with EF-G. All three of the oxazolidinones used in this study inhibited translocation of fMet-tRNA. We propose that the oxazolidinones target the ribosomal P site and pleiotropically affect fMet-tRNA binding, EF-P stimulated synthesis of peptide bonds, and, most markedly, EF-G-mediated translocation of fMet-tRNA into the P site.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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