The NEAT Domain-Containing Proteins of Clostridium perfringens Bind Heme.

The ability of a pathogenic bacterium to scavenge iron from its host is important for its growth and survival during an infection. Our studies on C. perfringens gas gangrene strain JIR325, a derivative of strain 13, showed that it is capable of utilizing both human hemoglobin and ferric chloride, bu...

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Main Authors: Jocelyn M Choo, Jackie K Cheung, Jessica A Wisniewski, David L Steer, Dieter M Bulach, Thomas J Hiscox, Anjana Chakravorty, A Ian Smith, David A Gell, Julian I Rood, Milena M Awad
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5026354?pdf=render
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spelling doaj-bab24a4bd42d4cc7a31918c4e3b836442020-11-24T21:37:03ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01119e016298110.1371/journal.pone.0162981The NEAT Domain-Containing Proteins of Clostridium perfringens Bind Heme.Jocelyn M ChooJackie K CheungJessica A WisniewskiDavid L SteerDieter M BulachThomas J HiscoxAnjana ChakravortyA Ian SmithDavid A GellJulian I RoodMilena M AwadThe ability of a pathogenic bacterium to scavenge iron from its host is important for its growth and survival during an infection. Our studies on C. perfringens gas gangrene strain JIR325, a derivative of strain 13, showed that it is capable of utilizing both human hemoglobin and ferric chloride, but not human holo-transferrin, as an iron source for in vitro growth. Analysis of the C. perfringens strain 13 genome sequence identified a putative heme acquisition system encoded by an iron-regulated surface gene region that we have named the Cht (Clostridium perfringens heme transport) locus. This locus comprises eight genes that are co-transcribed and includes genes that encode NEAT domain-containing proteins (ChtD and ChtE) and a putative sortase (Srt). The ChtD, ChtE and Srt proteins were shown to be expressed in JIR325 cells grown under iron-limited conditions and were localized to the cell envelope. Moreover, the NEAT proteins, ChtD and ChtE, were found to bind heme. Both chtDE and srt mutants were constructed, but these mutants were not defective in hemoglobin or ferric chloride utilization. They were, however, attenuated for virulence when tested in a mouse myonecrosis model, although the virulence phenotype could not be restored via complementation and, as is common with such systems, secondary mutations were identified in these strains. In summary, this study provides evidence for the functional redundancies that occur in the heme transport pathways of this life threatening pathogen.http://europepmc.org/articles/PMC5026354?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jocelyn M Choo
Jackie K Cheung
Jessica A Wisniewski
David L Steer
Dieter M Bulach
Thomas J Hiscox
Anjana Chakravorty
A Ian Smith
David A Gell
Julian I Rood
Milena M Awad
spellingShingle Jocelyn M Choo
Jackie K Cheung
Jessica A Wisniewski
David L Steer
Dieter M Bulach
Thomas J Hiscox
Anjana Chakravorty
A Ian Smith
David A Gell
Julian I Rood
Milena M Awad
The NEAT Domain-Containing Proteins of Clostridium perfringens Bind Heme.
PLoS ONE
author_facet Jocelyn M Choo
Jackie K Cheung
Jessica A Wisniewski
David L Steer
Dieter M Bulach
Thomas J Hiscox
Anjana Chakravorty
A Ian Smith
David A Gell
Julian I Rood
Milena M Awad
author_sort Jocelyn M Choo
title The NEAT Domain-Containing Proteins of Clostridium perfringens Bind Heme.
title_short The NEAT Domain-Containing Proteins of Clostridium perfringens Bind Heme.
title_full The NEAT Domain-Containing Proteins of Clostridium perfringens Bind Heme.
title_fullStr The NEAT Domain-Containing Proteins of Clostridium perfringens Bind Heme.
title_full_unstemmed The NEAT Domain-Containing Proteins of Clostridium perfringens Bind Heme.
title_sort neat domain-containing proteins of clostridium perfringens bind heme.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description The ability of a pathogenic bacterium to scavenge iron from its host is important for its growth and survival during an infection. Our studies on C. perfringens gas gangrene strain JIR325, a derivative of strain 13, showed that it is capable of utilizing both human hemoglobin and ferric chloride, but not human holo-transferrin, as an iron source for in vitro growth. Analysis of the C. perfringens strain 13 genome sequence identified a putative heme acquisition system encoded by an iron-regulated surface gene region that we have named the Cht (Clostridium perfringens heme transport) locus. This locus comprises eight genes that are co-transcribed and includes genes that encode NEAT domain-containing proteins (ChtD and ChtE) and a putative sortase (Srt). The ChtD, ChtE and Srt proteins were shown to be expressed in JIR325 cells grown under iron-limited conditions and were localized to the cell envelope. Moreover, the NEAT proteins, ChtD and ChtE, were found to bind heme. Both chtDE and srt mutants were constructed, but these mutants were not defective in hemoglobin or ferric chloride utilization. They were, however, attenuated for virulence when tested in a mouse myonecrosis model, although the virulence phenotype could not be restored via complementation and, as is common with such systems, secondary mutations were identified in these strains. In summary, this study provides evidence for the functional redundancies that occur in the heme transport pathways of this life threatening pathogen.
url http://europepmc.org/articles/PMC5026354?pdf=render
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