Sub-inhibitory fosmidomycin exposures elicits oxidative stress in Salmonella enterica serovar Typhimurium LT2.
Fosmidomycin is a time-dependent nanomolar inhibitor of methylerythritol phosphate (MEP) synthase, which is the enzyme that catalyzes the first committed step in the MEP pathway to isoprenoids. Importantly, fosmidomycin is one of only a few MEP pathway-specific inhibitors that exhibits antimicrobial...
Main Authors: | , , , , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2014-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC3994034?pdf=render |
id |
doaj-9f74c1a2a0db47f1993e3256248be398 |
---|---|
record_format |
Article |
spelling |
doaj-9f74c1a2a0db47f1993e3256248be3982020-11-25T02:11:57ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0194e9527110.1371/journal.pone.0095271Sub-inhibitory fosmidomycin exposures elicits oxidative stress in Salmonella enterica serovar Typhimurium LT2.David T FoxEmily N SchmidtHongzhao TianSuraj DhunganaMichael C ValentineNicole V WarringtonPaul D PhillipsKellan B FinneyEmily K CopeJeff G LeidCharles A TestaAndrew T KoppischFosmidomycin is a time-dependent nanomolar inhibitor of methylerythritol phosphate (MEP) synthase, which is the enzyme that catalyzes the first committed step in the MEP pathway to isoprenoids. Importantly, fosmidomycin is one of only a few MEP pathway-specific inhibitors that exhibits antimicrobial activity. Most inhibitors identified to date only exhibit activity against isolated pathway enzymes. The MEP pathway is the sole route to isoprenoids in many bacteria, yet has no human homologs. The development of inhibitors of this pathway holds promise as novel antimicrobial agents. Similarly, analyses of the bacterial response toward MEP pathway inhibitors provides valuable information toward the understanding of how emergent resistance may ultimately develop to this class of antibiotics. We have examined the transcriptional response of Salmonella enterica serovar typhimurium LT2 to sub-inhibitory concentrations of fosmidomycin via cDNA microarray and RT-PCR. Within the regulated genes identified by microarray were a number of genes encoding enzymes associated with the mediation of reactive oxygen species (ROS). Regulation of a panel of genes implicated in the response of cells to oxidative stress (including genes for catalases, superoxide dismutases, and alkylhydrogen peroxide reductases) was investigated and mild upregulation in some members was observed as a function of fosmidomycin exposure over time. The extent of regulation of these genes was similar to that observed for comparable exposures to kanamycin, but differed significantly from tetracycline. Furthermore, S. typhimurium exposed to sub-inhibitory concentrations of fosmidomycin displayed an increased sensitivity to exogenous H2O2 relative to either untreated controls or kanamycin-treated cells. Our results suggest that endogenous oxidative stress is one consequence of exposures to fosmidomycin, likely through the temporal depletion of intracellular isoprenoids themselves, rather than other mechanisms that have been proposed to facilitate ROS accumulation in bacteria (e.g. cell death processes or the ability of the antibiotic to redox cycle).http://europepmc.org/articles/PMC3994034?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
David T Fox Emily N Schmidt Hongzhao Tian Suraj Dhungana Michael C Valentine Nicole V Warrington Paul D Phillips Kellan B Finney Emily K Cope Jeff G Leid Charles A Testa Andrew T Koppisch |
spellingShingle |
David T Fox Emily N Schmidt Hongzhao Tian Suraj Dhungana Michael C Valentine Nicole V Warrington Paul D Phillips Kellan B Finney Emily K Cope Jeff G Leid Charles A Testa Andrew T Koppisch Sub-inhibitory fosmidomycin exposures elicits oxidative stress in Salmonella enterica serovar Typhimurium LT2. PLoS ONE |
author_facet |
David T Fox Emily N Schmidt Hongzhao Tian Suraj Dhungana Michael C Valentine Nicole V Warrington Paul D Phillips Kellan B Finney Emily K Cope Jeff G Leid Charles A Testa Andrew T Koppisch |
author_sort |
David T Fox |
title |
Sub-inhibitory fosmidomycin exposures elicits oxidative stress in Salmonella enterica serovar Typhimurium LT2. |
title_short |
Sub-inhibitory fosmidomycin exposures elicits oxidative stress in Salmonella enterica serovar Typhimurium LT2. |
title_full |
Sub-inhibitory fosmidomycin exposures elicits oxidative stress in Salmonella enterica serovar Typhimurium LT2. |
title_fullStr |
Sub-inhibitory fosmidomycin exposures elicits oxidative stress in Salmonella enterica serovar Typhimurium LT2. |
title_full_unstemmed |
Sub-inhibitory fosmidomycin exposures elicits oxidative stress in Salmonella enterica serovar Typhimurium LT2. |
title_sort |
sub-inhibitory fosmidomycin exposures elicits oxidative stress in salmonella enterica serovar typhimurium lt2. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2014-01-01 |
description |
Fosmidomycin is a time-dependent nanomolar inhibitor of methylerythritol phosphate (MEP) synthase, which is the enzyme that catalyzes the first committed step in the MEP pathway to isoprenoids. Importantly, fosmidomycin is one of only a few MEP pathway-specific inhibitors that exhibits antimicrobial activity. Most inhibitors identified to date only exhibit activity against isolated pathway enzymes. The MEP pathway is the sole route to isoprenoids in many bacteria, yet has no human homologs. The development of inhibitors of this pathway holds promise as novel antimicrobial agents. Similarly, analyses of the bacterial response toward MEP pathway inhibitors provides valuable information toward the understanding of how emergent resistance may ultimately develop to this class of antibiotics. We have examined the transcriptional response of Salmonella enterica serovar typhimurium LT2 to sub-inhibitory concentrations of fosmidomycin via cDNA microarray and RT-PCR. Within the regulated genes identified by microarray were a number of genes encoding enzymes associated with the mediation of reactive oxygen species (ROS). Regulation of a panel of genes implicated in the response of cells to oxidative stress (including genes for catalases, superoxide dismutases, and alkylhydrogen peroxide reductases) was investigated and mild upregulation in some members was observed as a function of fosmidomycin exposure over time. The extent of regulation of these genes was similar to that observed for comparable exposures to kanamycin, but differed significantly from tetracycline. Furthermore, S. typhimurium exposed to sub-inhibitory concentrations of fosmidomycin displayed an increased sensitivity to exogenous H2O2 relative to either untreated controls or kanamycin-treated cells. Our results suggest that endogenous oxidative stress is one consequence of exposures to fosmidomycin, likely through the temporal depletion of intracellular isoprenoids themselves, rather than other mechanisms that have been proposed to facilitate ROS accumulation in bacteria (e.g. cell death processes or the ability of the antibiotic to redox cycle). |
url |
http://europepmc.org/articles/PMC3994034?pdf=render |
work_keys_str_mv |
AT davidtfox subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT emilynschmidt subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT hongzhaotian subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT surajdhungana subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT michaelcvalentine subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT nicolevwarrington subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT pauldphillips subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT kellanbfinney subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT emilykcope subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT jeffgleid subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT charlesatesta subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 AT andrewtkoppisch subinhibitoryfosmidomycinexposureselicitsoxidativestressinsalmonellaentericaserovartyphimuriumlt2 |
_version_ |
1724911710606721024 |