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Mutagenesis and Functional Selection Protocols for Directed Evolution of Proteins in E. coli
Published on: March 16, 2011
Genetic basis for vancomycin-enhanced cephalosporin susceptibility in vancomycin-resistant enterococci revealed using
Christopher J Kristich1, Dusanka Djorić, Jaime L Little
1Department of Microbiology and Molecular Genetics, Center for Infectious Disease Research, Medical College of Wisconsin, Milwaukee, Wisconsin, USA.
Abstract:
Antibiotic-resistant enterococci are major causes of hospital-acquired infections. All enterococci are intrinsically resistant to most cephalosporins, antibiotics in the beta-lactam family that impair peptidoglycan synthesis by inactivating the transpeptidases responsible for cross-linking. In addition, clinical isolates of enterococci often possess acquired resistance to vancomycin, a glycopeptide antibiotic that impairs peptidoglycan biosynthesis by a mechanism distinct from that of the beta-lactams, namely, by binding to the D-Ala-D-Ala termini found in peptidoglycan precursors to prevent their utilization by biosynthetic transglycosylases. Antimicrobial synergism between vancomycin and beta-lactams against vancomycin-resistant enterococci was originally described decades ago, but the genetic basis for synergy has remained unknown. Because a complete understanding of the mechanism underlying synergy between vancomycin and beta-lactams might suggest new targets or strategies for therapeutic intervention against antibiotic-resistant enterococci, we explored the genetic basis for synergy between vancomycin and cephalosporins in Enterococcus faecalis. To do so, we developed a counterselection strategy based on a dominant-negative mutant of thymidylate synthase and implemented this approach to create a panel of mutants in vancomycin-resistant E. faecalis. Our results confirm that vancomycin promotes synergy by inducing expression of the van resistance genes, as a mutant in which the van genes are expressed in the absence of vancomycin exhibits susceptibility to cephalosporins. Further, we show that peptidoglycan precursors substituted with D-Ala-D-Lac are not required for vancomycin-enhanced cephalosporin sensitivity. Instead, production of the D,D-carboxypeptidase VanYB is both necessary and sufficient to dramatically sensitize E. faecalis to cephalosporins.
Insights
Vancomycin enhances cephalosporin effectiveness against resistant enterococci by inducing resistance genes. The enzyme VanYB is key to this synergy, sensitizing bacteria to cephalosporins.
Area of Science:
- Microbiology
- Molecular Biology
- Antibiotic Resistance
Background:
- Enterococci are a significant cause of hospital-acquired infections, often exhibiting resistance to multiple antibiotics.
- Enterococci are intrinsically resistant to cephalosporins and can acquire resistance to vancomycin, complicating treatment.
- The synergistic interaction between vancomycin and beta-lactams against resistant enterococci is known but poorly understood genetically.
Purpose of the Study:
- To elucidate the genetic basis for the synergistic antimicrobial effect between vancomycin and cephalosporins in Enterococcus faecalis.
- To identify specific genes or mechanisms responsible for vancomycin-mediated sensitization to cephalosporins.
Main Methods:
- Development of a novel counterselection strategy using a dominant-negative thymidylate synthase mutant.
- Construction and analysis of a mutant panel in vancomycin-resistant Enterococcus faecalis.
- Investigating the role of vancomycin resistance genes and peptidoglycan precursor modification in synergy.
Main Results:
- Vancomycin induces the expression of van resistance genes, leading to cephalosporin susceptibility when these genes are constitutively expressed.
- Sensitization to cephalosporins by vancomycin does not depend on peptidoglycan precursors modified with D-Ala-D-Lac.
- The D,D-carboxypeptidase VanYB was identified as both necessary and sufficient for vancomycin-enhanced cephalosporin sensitivity.
Conclusions:
- Vancomycin-cephalosporin synergy in Enterococcus faecalis is mediated by the induction of van resistance genes.
- The D,D-carboxypeptidase VanYB plays a critical role in this synergistic effect, independent of altered peptidoglycan precursors.
- Understanding this mechanism may reveal new therapeutic strategies against antibiotic-resistant enterococci.
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