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Zn(II) mediates vancomycin polymerization and potentiates its antibiotic activity against resistant bacteria

Published version
Peer-reviewed

Type

Article

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Authors

Macklyne, H-R 
Chirgadze, DY 
Bond, AD 
Hesketh, AR 

Abstract

Vancomycin is known to bind to Zn(II) and can induce a zinc starvation response in bacteria. Here we identify a novel polymerization of vancomycin dimers by structural analysis of vancomycin-Zn(II) crystals and fibre X-ray diffraction. Bioassays indicate that this structure is associated with an increased antibiotic activity against bacterial strains possessing high level vancomycin resistance mediated by the reprogramming of peptidoglycan biosynthesis to use precursors terminating in D-Ala-D-Lac in place of D-Ala-D-Ala. Polymerization occurs via interaction of Zn(II) with the N-terminal methylleucine group of vancomycin, and we show that the activity of other glycopeptide antibiotics with this feature can also be similarly augmented by Zn(II). Construction and analysis of a model strain predominantly using D-Ala-D-Lac precursors for peptidoglycan biosynthesis during normal growth supports the hypothesis that Zn(II) mediated vancomycin polymerization enhances the binding affinity towards these precursors.

Description

Keywords

Anti-Bacterial Agents, Bacteria, Biosynthetic Pathways, Cations, Divalent, Cell Wall, Enterococcus faecalis, Microbial Sensitivity Tests, Peptidoglycan, Polymerization, Streptomyces, Vancomycin, X-Ray Diffraction, Zinc

Journal Title

Scientific Reports

Conference Name

Journal ISSN

2045-2322
2045-2322

Volume Title

7

Publisher

Nature Publishing Group
Sponsorship
The Royal Society (uf100007)
Medical Research Council (G0700141)
This work was supported by funding from the Royal Society, UK (516002.K5877/ROG) and the Medical Research Council, UK (G0700141). A.Z. was supported from the Said foundation, the Cambridge Trust and the Cambridge Philosophical Society.