The Legionella pneumophila GIG operon responds to gold and copper in planktonic and biofilm cultures.

Legionella pneumophila contaminates man-made water systems and creates numerous exposure risks for Legionnaires' Disease. Because copper/silver ionization is commonly used to control L. pneumophila, its mechanisms of metal response and detoxification are of significant interest. Here we describ...

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Main Authors: Kathleen Jwanoswki, Christina Wells, Terri Bruce, Jennifer Rutt, Tabitha Banks, Tamara L McNealy
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5413113?pdf=render
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spelling doaj-13d2a0512f8849d4bdd64ebb029f55732020-11-25T02:05:17ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01125e017424510.1371/journal.pone.0174245The Legionella pneumophila GIG operon responds to gold and copper in planktonic and biofilm cultures.Kathleen JwanoswkiChristina WellsTerri BruceJennifer RuttTabitha BanksTamara L McNealyLegionella pneumophila contaminates man-made water systems and creates numerous exposure risks for Legionnaires' Disease. Because copper/silver ionization is commonly used to control L. pneumophila, its mechanisms of metal response and detoxification are of significant interest. Here we describe an L. pneumophila operon with significant similarity to the GIG operon of Cupriavidus metallidurans. The Legionella GIG operon is present in a subset of strains and has been acquired as part of the ICE-βox 65-kB integrative conjugative element. We assessed GIG promoter activity following exposure of L. pneumophila to multiple concentrations of HAuCl4, CuSO4 and AgNO3. At 37°C, control stationary phase cultures exhibited GIG promoter activity. This activity increased significantly in response to 20 and 50uM HAuCl4 and CuSO4 but not in response to AgNO3. Conversely, at 26°C, cultures exhibited decreased promoter response to copper. GIG promoter activity was also induced by HAuCl4 or CuSO4 during early biofilm establishment at both temperatures. When an L. pneumophila GIG promoter construct was transformed into E. coli DH5α, cultures showed baseline expression levels that did not increase following metal addition. Analysis of L. pneumophila transcriptional regulatory mutants suggested that GIG up-regulation in the presence of metal ions may be influenced by the stationary phase sigma factor, RpoS.http://europepmc.org/articles/PMC5413113?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kathleen Jwanoswki
Christina Wells
Terri Bruce
Jennifer Rutt
Tabitha Banks
Tamara L McNealy
spellingShingle Kathleen Jwanoswki
Christina Wells
Terri Bruce
Jennifer Rutt
Tabitha Banks
Tamara L McNealy
The Legionella pneumophila GIG operon responds to gold and copper in planktonic and biofilm cultures.
PLoS ONE
author_facet Kathleen Jwanoswki
Christina Wells
Terri Bruce
Jennifer Rutt
Tabitha Banks
Tamara L McNealy
author_sort Kathleen Jwanoswki
title The Legionella pneumophila GIG operon responds to gold and copper in planktonic and biofilm cultures.
title_short The Legionella pneumophila GIG operon responds to gold and copper in planktonic and biofilm cultures.
title_full The Legionella pneumophila GIG operon responds to gold and copper in planktonic and biofilm cultures.
title_fullStr The Legionella pneumophila GIG operon responds to gold and copper in planktonic and biofilm cultures.
title_full_unstemmed The Legionella pneumophila GIG operon responds to gold and copper in planktonic and biofilm cultures.
title_sort legionella pneumophila gig operon responds to gold and copper in planktonic and biofilm cultures.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Legionella pneumophila contaminates man-made water systems and creates numerous exposure risks for Legionnaires' Disease. Because copper/silver ionization is commonly used to control L. pneumophila, its mechanisms of metal response and detoxification are of significant interest. Here we describe an L. pneumophila operon with significant similarity to the GIG operon of Cupriavidus metallidurans. The Legionella GIG operon is present in a subset of strains and has been acquired as part of the ICE-βox 65-kB integrative conjugative element. We assessed GIG promoter activity following exposure of L. pneumophila to multiple concentrations of HAuCl4, CuSO4 and AgNO3. At 37°C, control stationary phase cultures exhibited GIG promoter activity. This activity increased significantly in response to 20 and 50uM HAuCl4 and CuSO4 but not in response to AgNO3. Conversely, at 26°C, cultures exhibited decreased promoter response to copper. GIG promoter activity was also induced by HAuCl4 or CuSO4 during early biofilm establishment at both temperatures. When an L. pneumophila GIG promoter construct was transformed into E. coli DH5α, cultures showed baseline expression levels that did not increase following metal addition. Analysis of L. pneumophila transcriptional regulatory mutants suggested that GIG up-regulation in the presence of metal ions may be influenced by the stationary phase sigma factor, RpoS.
url http://europepmc.org/articles/PMC5413113?pdf=render
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