Lesions in Teichoic Acid Biosynthesis in Staphylococcus aureus Lead to a Lethal Gain of Function in the Otherwise Dispensable Pathway
- 15 June 2006
- journal article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 188 (12), 4183-4189
- https://doi.org/10.1128/jb.00197-06
Abstract
An extensive study of teichoic acid biosynthesis in the model organism Bacillus subtilis has established teichoic acid polymers as essential components of the gram-positive cell wall. However, similar studies pertaining to therapeutically relevant organisms, such as Staphylococcus aureus, are scarce. In this study we have carried out a meticulous examination of the dispensability of teichoic acid biosynthetic enzymes in S. aureus. By use of an allelic replacement methodology, we examined all facets of teichoic acid assembly, including intracellular polymer production and export. Using this approach we confirmed that the first-acting enzyme (TarO) was dispensable for growth, in contrast to dispensability studies in B. subtilis. Upon further characterization, we demonstrated that later-acting gene products (TarB, TarD, TarF, TarIJ, and TarH) responsible for polymer formation and export were essential for viability. We resolved this paradox by demonstrating that all of the apparently indispensable genes became dispensable in a tarO null genetic background. This work suggests a lethal gain-of-function mechanism where lesions beyond the initial step in wall teichoic acid biosynthesis render S. aureus nonviable. This discovery poses questions regarding the conventional understanding of essential gene sets, garnered through single-gene knockout experiments in bacteria and higher organisms, and points to a novel drug development strategy targeting late steps in teichoic acid synthesis for the infectious pathogen S. aureus.Keywords
This publication has 46 references indexed in Scilit:
- The TagB Protein in Bacillus subtilis 168 Is an Intracellular Peripheral Membrane Protein That Can Incorporate Glycerol Phosphate onto a Membrane-bound Acceptor in VitroJournal of Biological Chemistry, 2005
- The C-terminal Domain of the Nucleotide-binding Domain Protein Wzt Determines Substrate Specificity in the ATP-binding Cassette Transporter for the Lipopolysaccharide O-antigens in Escherichia coli Serotypes O8 and O9aJournal of Biological Chemistry, 2005
- Teichoic Acid Is an Essential Polymer in Bacillus subtilis That Is Functionally Distinct from Teichuronic AcidJournal of Bacteriology, 2004
- Purified, Recombinant TagF Protein from Bacillus subtilis 168 Catalyzes the Polymerization of Glycerol Phosphate onto a Membrane Acceptor in VitroJournal of Biological Chemistry, 2003
- Characterization of the Depletion of 2- C -Methyl- d -Erythritol-2,4-Cyclodiphosphate Synthase in Escherichia coli and Bacillus subtilisJournal of Bacteriology, 2002
- The tagGH operon of Bacillus subtilis 168 encodes a two‐component ABC transporter involved in the metabolism of two wall teichoic acidsMolecular Microbiology, 1995
- A conditional-lethal mutant of Bacillus subtilis 168 with a thermosensitive glycerol-3-phosphate cytidylyltransferase, an enzyme specific for the synthesis of the major wall teichoic acidJournal of General Microbiology, 1991
- Mutants of Bacillus subtilis 168 Thermosensitive for Growth and Wall Teichoic Acid SynthesisMicrobiology, 1989
- Thermosensitive Bacillus Subtilis Mutants Which Lyse at the Non-permissive TemperatureMicrobiology, 1987
- The toxic shock syndrome exotoxin structural gene is not detectably transmitted by a prophageNature, 1983