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Three Dimensional Structure of the MqsR:MqsA Complex: A Novel TA Pair Comprised of a Toxin Homologous to RelE and an Antitoxin with Unique Properties

One mechanism by which bacteria survive environmental stress is through the formation of bacterial persisters, a sub-population of genetically identical quiescent cells that exhibit multidrug tolerance and are highly enriched in bacterial toxins. Recently, the Escherichia coli gene mqsR (b3022) was...

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Autores principales: Brown, Breann L., Grigoriu, Simina, Kim, Younghoon, Arruda, Jennifer M., Davenport, Andrew, Wood, Thomas K., Peti, Wolfgang, Page, Rebecca
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2791442/
https://www.ncbi.nlm.nih.gov/pubmed/20041169
http://dx.doi.org/10.1371/journal.ppat.1000706
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author Brown, Breann L.
Grigoriu, Simina
Kim, Younghoon
Arruda, Jennifer M.
Davenport, Andrew
Wood, Thomas K.
Peti, Wolfgang
Page, Rebecca
author_facet Brown, Breann L.
Grigoriu, Simina
Kim, Younghoon
Arruda, Jennifer M.
Davenport, Andrew
Wood, Thomas K.
Peti, Wolfgang
Page, Rebecca
author_sort Brown, Breann L.
collection PubMed
description One mechanism by which bacteria survive environmental stress is through the formation of bacterial persisters, a sub-population of genetically identical quiescent cells that exhibit multidrug tolerance and are highly enriched in bacterial toxins. Recently, the Escherichia coli gene mqsR (b3022) was identified as the gene most highly upregulated in persisters. Here, we report multiple individual and complex three-dimensional structures of MqsR and its antitoxin MqsA (B3021), which reveal that MqsR:MqsA form a novel toxin:antitoxin (TA) pair. MqsR adopts an α/β fold that is homologous with the RelE/YoeB family of bacterial ribonuclease toxins. MqsA is an elongated dimer that neutralizes MqsR toxicity. As expected for a TA pair, MqsA binds its own promoter. Unexpectedly, it also binds the promoters of genes important for E. coli physiology (e.g., mcbR, spy). Unlike canonical antitoxins, MqsA is also structured throughout its entire sequence, binds zinc and coordinates DNA via its C- and not N-terminal domain. These studies reveal that TA systems, especially the antitoxins, are significantly more diverse than previously recognized and provide new insights into the role of toxins in maintaining the persister state.
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spelling pubmed-27914422009-12-30 Three Dimensional Structure of the MqsR:MqsA Complex: A Novel TA Pair Comprised of a Toxin Homologous to RelE and an Antitoxin with Unique Properties Brown, Breann L. Grigoriu, Simina Kim, Younghoon Arruda, Jennifer M. Davenport, Andrew Wood, Thomas K. Peti, Wolfgang Page, Rebecca PLoS Pathog Research Article One mechanism by which bacteria survive environmental stress is through the formation of bacterial persisters, a sub-population of genetically identical quiescent cells that exhibit multidrug tolerance and are highly enriched in bacterial toxins. Recently, the Escherichia coli gene mqsR (b3022) was identified as the gene most highly upregulated in persisters. Here, we report multiple individual and complex three-dimensional structures of MqsR and its antitoxin MqsA (B3021), which reveal that MqsR:MqsA form a novel toxin:antitoxin (TA) pair. MqsR adopts an α/β fold that is homologous with the RelE/YoeB family of bacterial ribonuclease toxins. MqsA is an elongated dimer that neutralizes MqsR toxicity. As expected for a TA pair, MqsA binds its own promoter. Unexpectedly, it also binds the promoters of genes important for E. coli physiology (e.g., mcbR, spy). Unlike canonical antitoxins, MqsA is also structured throughout its entire sequence, binds zinc and coordinates DNA via its C- and not N-terminal domain. These studies reveal that TA systems, especially the antitoxins, are significantly more diverse than previously recognized and provide new insights into the role of toxins in maintaining the persister state. Public Library of Science 2009-12-24 /pmc/articles/PMC2791442/ /pubmed/20041169 http://dx.doi.org/10.1371/journal.ppat.1000706 Text en Brown et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Brown, Breann L.
Grigoriu, Simina
Kim, Younghoon
Arruda, Jennifer M.
Davenport, Andrew
Wood, Thomas K.
Peti, Wolfgang
Page, Rebecca
Three Dimensional Structure of the MqsR:MqsA Complex: A Novel TA Pair Comprised of a Toxin Homologous to RelE and an Antitoxin with Unique Properties
title Three Dimensional Structure of the MqsR:MqsA Complex: A Novel TA Pair Comprised of a Toxin Homologous to RelE and an Antitoxin with Unique Properties
title_full Three Dimensional Structure of the MqsR:MqsA Complex: A Novel TA Pair Comprised of a Toxin Homologous to RelE and an Antitoxin with Unique Properties
title_fullStr Three Dimensional Structure of the MqsR:MqsA Complex: A Novel TA Pair Comprised of a Toxin Homologous to RelE and an Antitoxin with Unique Properties
title_full_unstemmed Three Dimensional Structure of the MqsR:MqsA Complex: A Novel TA Pair Comprised of a Toxin Homologous to RelE and an Antitoxin with Unique Properties
title_short Three Dimensional Structure of the MqsR:MqsA Complex: A Novel TA Pair Comprised of a Toxin Homologous to RelE and an Antitoxin with Unique Properties
title_sort three dimensional structure of the mqsr:mqsa complex: a novel ta pair comprised of a toxin homologous to rele and an antitoxin with unique properties
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2791442/
https://www.ncbi.nlm.nih.gov/pubmed/20041169
http://dx.doi.org/10.1371/journal.ppat.1000706
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