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Francisella tularensis IglG Belongs to a Novel Family of PAAR-Like T6SS Proteins and Harbors a Unique N-terminal Extension Required for Virulence

The virulence of Francisella tularensis, the etiological agent of tularemia, relies on an atypical type VI secretion system (T6SS) encoded by a genomic island termed the Francisella Pathogenicity Island (FPI). While the importance of the FPI in F. tularensis virulence is clearly established, the pre...

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Autores principales: Rigard, Mélanie, Bröms, Jeanette E., Mosnier, Amandine, Hologne, Maggy, Martin, Amandine, Lindgren, Lena, Punginelli, Claire, Lays, Claire, Walker, Olivier, Charbit, Alain, Telouk, Philippe, Conlan, Wayne, Terradot, Laurent, Sjöstedt, Anders, Henry, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014421/
https://www.ncbi.nlm.nih.gov/pubmed/27602570
http://dx.doi.org/10.1371/journal.ppat.1005821
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author Rigard, Mélanie
Bröms, Jeanette E.
Mosnier, Amandine
Hologne, Maggy
Martin, Amandine
Lindgren, Lena
Punginelli, Claire
Lays, Claire
Walker, Olivier
Charbit, Alain
Telouk, Philippe
Conlan, Wayne
Terradot, Laurent
Sjöstedt, Anders
Henry, Thomas
author_facet Rigard, Mélanie
Bröms, Jeanette E.
Mosnier, Amandine
Hologne, Maggy
Martin, Amandine
Lindgren, Lena
Punginelli, Claire
Lays, Claire
Walker, Olivier
Charbit, Alain
Telouk, Philippe
Conlan, Wayne
Terradot, Laurent
Sjöstedt, Anders
Henry, Thomas
author_sort Rigard, Mélanie
collection PubMed
description The virulence of Francisella tularensis, the etiological agent of tularemia, relies on an atypical type VI secretion system (T6SS) encoded by a genomic island termed the Francisella Pathogenicity Island (FPI). While the importance of the FPI in F. tularensis virulence is clearly established, the precise role of most of the FPI-encoded proteins remains to be deciphered. In this study, using highly virulent F. tularensis strains and the closely related species F. novicida, IglG was characterized as a protein featuring a unique α-helical N-terminal extension and a domain of unknown function (DUF4280), present in more than 250 bacterial species. Three dimensional modeling of IglG and of the DUF4280 consensus protein sequence indicates that these proteins adopt a PAAR-like fold, suggesting they could cap the T6SS in a similar way as the recently described PAAR proteins. The newly identified PAAR-like motif is characterized by four conserved cysteine residues, also present in IglG, which may bind a metal atom. We demonstrate that IglG binds metal ions and that each individual cysteine is required for T6SS-dependent secretion of IglG and of the Hcp homologue, IglC and for the F. novicida intracellular life cycle. In contrast, the Francisella-specific N-terminal α-helical extension is not required for IglG secretion, but is critical for F. novicida virulence and for the interaction of IglG with another FPI-encoded protein, IglF. Altogether, our data suggest that IglG is a PAAR-like protein acting as a bi-modal protein that may connect the tip of the Francisella T6SS with a putative T6SS effector, IglF.
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spelling pubmed-50144212016-09-27 Francisella tularensis IglG Belongs to a Novel Family of PAAR-Like T6SS Proteins and Harbors a Unique N-terminal Extension Required for Virulence Rigard, Mélanie Bröms, Jeanette E. Mosnier, Amandine Hologne, Maggy Martin, Amandine Lindgren, Lena Punginelli, Claire Lays, Claire Walker, Olivier Charbit, Alain Telouk, Philippe Conlan, Wayne Terradot, Laurent Sjöstedt, Anders Henry, Thomas PLoS Pathog Research Article The virulence of Francisella tularensis, the etiological agent of tularemia, relies on an atypical type VI secretion system (T6SS) encoded by a genomic island termed the Francisella Pathogenicity Island (FPI). While the importance of the FPI in F. tularensis virulence is clearly established, the precise role of most of the FPI-encoded proteins remains to be deciphered. In this study, using highly virulent F. tularensis strains and the closely related species F. novicida, IglG was characterized as a protein featuring a unique α-helical N-terminal extension and a domain of unknown function (DUF4280), present in more than 250 bacterial species. Three dimensional modeling of IglG and of the DUF4280 consensus protein sequence indicates that these proteins adopt a PAAR-like fold, suggesting they could cap the T6SS in a similar way as the recently described PAAR proteins. The newly identified PAAR-like motif is characterized by four conserved cysteine residues, also present in IglG, which may bind a metal atom. We demonstrate that IglG binds metal ions and that each individual cysteine is required for T6SS-dependent secretion of IglG and of the Hcp homologue, IglC and for the F. novicida intracellular life cycle. In contrast, the Francisella-specific N-terminal α-helical extension is not required for IglG secretion, but is critical for F. novicida virulence and for the interaction of IglG with another FPI-encoded protein, IglF. Altogether, our data suggest that IglG is a PAAR-like protein acting as a bi-modal protein that may connect the tip of the Francisella T6SS with a putative T6SS effector, IglF. Public Library of Science 2016-09-07 /pmc/articles/PMC5014421/ /pubmed/27602570 http://dx.doi.org/10.1371/journal.ppat.1005821 Text en © 2016 Rigard 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
Rigard, Mélanie
Bröms, Jeanette E.
Mosnier, Amandine
Hologne, Maggy
Martin, Amandine
Lindgren, Lena
Punginelli, Claire
Lays, Claire
Walker, Olivier
Charbit, Alain
Telouk, Philippe
Conlan, Wayne
Terradot, Laurent
Sjöstedt, Anders
Henry, Thomas
Francisella tularensis IglG Belongs to a Novel Family of PAAR-Like T6SS Proteins and Harbors a Unique N-terminal Extension Required for Virulence
title Francisella tularensis IglG Belongs to a Novel Family of PAAR-Like T6SS Proteins and Harbors a Unique N-terminal Extension Required for Virulence
title_full Francisella tularensis IglG Belongs to a Novel Family of PAAR-Like T6SS Proteins and Harbors a Unique N-terminal Extension Required for Virulence
title_fullStr Francisella tularensis IglG Belongs to a Novel Family of PAAR-Like T6SS Proteins and Harbors a Unique N-terminal Extension Required for Virulence
title_full_unstemmed Francisella tularensis IglG Belongs to a Novel Family of PAAR-Like T6SS Proteins and Harbors a Unique N-terminal Extension Required for Virulence
title_short Francisella tularensis IglG Belongs to a Novel Family of PAAR-Like T6SS Proteins and Harbors a Unique N-terminal Extension Required for Virulence
title_sort francisella tularensis iglg belongs to a novel family of paar-like t6ss proteins and harbors a unique n-terminal extension required for virulence
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014421/
https://www.ncbi.nlm.nih.gov/pubmed/27602570
http://dx.doi.org/10.1371/journal.ppat.1005821
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