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Oxford Brookes University

Understanding the Genome-Wide Response of Streptomyces coelicolor to the Glycopeptide Antibiotic Teicoplanin

Abstract

dc:description

The glycopeptide antibiotics vancomycin and teicoplanin are clinically important as a second-line therapy to treat nosocomial infections caused by Gram-positive pathogens. Glycopeptide antibiotics universally target the terminal residues, D-Alanyl-D-Alanine on the cell wall peptidoglycan intermediate lipid II, interfering with peptidoglycan biosynthesis and weakening the cell wall. A general resistance mechanism to these antibiotics requires a core set of genes, vanRSHAX, that detect a glycopeptide (VanS) and upregulate genes (VanR) which orchestrate the remodelling of D-Ala-D-Ala on lipid II to D-Ala-D-Lactate (VanHAX), reducing glyopeptide affinity by 1000-fold. Our previous study demonstrated that altering the termini of lipid II by VanHAX action is insufficient for providing resistance to teicoplanin in S. coelicolor, which is instead mediated mainly by the elusive membrane protein, VanJ. This study further characterised VanJ by comparing the transcriptomes of a wt S. coelicolor A3(2) M600 strain and an isogenic ΔvanJ knock-out mutant after exposing cells to teicoplanin, identifying that ΔvanJ exhibited increased signs of cellular stress that were attributed to a delayed induction of genes involved in the osmotic, redox, and cell envelope stress responses. This dataset led to the functional characterisation of a group of genes with phosphatidic acid phosphatase activity which affected the sensitivity of S. coelicolor to a broad range of cell wall targeting antibiotics. One of these genes, SCO6355, significantly counteracted the intrinsic vanRSHAX resistance system of S. coelicolor, lowering its high-level vancomycin resistance (80 μg/mL) by four fold, to intermediate levels (20 μg/mL). This work demonstrates a novel mechanism which can antagonise the function of intrinsic van resistance clusters that will be important in the development of strategies that can circumvent glycopeptide resistance in clinical pathogens.

Degree

thesis:*
Grantor dc:publisher
Oxford Brookes University
Year dc:date
2021

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Connelly, Samuel
Contributors dc:contributor
  • Hong, Hee-Jeon
  • Bolanos-Garcia, Victor M.
  • Hesketh, Andrew

Rights

dc:rights
Statement dc:rights
  • All rights reserved
Language dc:language
en

Identifiers

dc:identifier.*
OAI identifier oai:identifier
tle:eedc0da4-00b8-410f-b899-9f3e9818319a:d6bd9758-527a-46cd-bfe2-c433766e8fca:1

Chain of custody

source
Harvested from
Oxford Brookes University
Base URL
radar.brookes.ac.uk/radar/oai
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
related terms
citation

Connelly, Samuel. Understanding the Genome-Wide Response of Streptomyces coelicolor to the Glycopeptide Antibiotic Teicoplanin. Oxford Brookes University, 2021. https://doi.org/10.24384/14qa-m159