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Polymorphisms of a Collagen-Like Adhesin Contributes to Legionella pneumophila Adhesion, Biofilm Formation Capacity and Clinical Prevalence

Legionellosis is a severe respiratory illness caused by the inhalation of aerosolized water droplets contaminated with the opportunistic pathogen Legionella pneumophila. The ability of L. pneumophila to produce biofilms has been associated with its capacity to colonize and persist in human-made wate...

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Autores principales: Abdel-Nour, Mena, Su, Han, Duncan, Carla, Li, Shaopei, Raju, Deepa, Shamoun, Feras, Valton, Marine, Ginevra, Christophe, Jarraud, Sophie, Guyard, Cyril, Kerman, Kagan, Terebiznik, Mauricio R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6460258/
https://www.ncbi.nlm.nih.gov/pubmed/31024468
http://dx.doi.org/10.3389/fmicb.2019.00604
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author Abdel-Nour, Mena
Su, Han
Duncan, Carla
Li, Shaopei
Raju, Deepa
Shamoun, Feras
Valton, Marine
Ginevra, Christophe
Jarraud, Sophie
Guyard, Cyril
Kerman, Kagan
Terebiznik, Mauricio R.
author_facet Abdel-Nour, Mena
Su, Han
Duncan, Carla
Li, Shaopei
Raju, Deepa
Shamoun, Feras
Valton, Marine
Ginevra, Christophe
Jarraud, Sophie
Guyard, Cyril
Kerman, Kagan
Terebiznik, Mauricio R.
author_sort Abdel-Nour, Mena
collection PubMed
description Legionellosis is a severe respiratory illness caused by the inhalation of aerosolized water droplets contaminated with the opportunistic pathogen Legionella pneumophila. The ability of L. pneumophila to produce biofilms has been associated with its capacity to colonize and persist in human-made water reservoirs and distribution systems, which are the source of legionellosis outbreaks. Nevertheless, the factors that mediate L. pneumophila biofilm formation are largely unknown. In previous studies we reported that the adhesin Legionella collagen-like protein (Lcl), is required for auto-aggregation, attachment to multiple surfaces and the formation of biofilms. Lcl structure contains three distinguishable regions: An N-terminal region with a predicted signal sequence, a central region containing tandem collagen-like repeats (R-domain) and a C-terminal region (C-domain) with no significant homology to other known proteins. Lcl R-domain encodes tandem repeats of the collagenous tripeptide Gly-Xaa-Yaa (GXY), a motif that is key for the molecular organization of mammalian collagen and mediates the binding of collagenous proteins to different cellular and environmental ligands. Interestingly, Lcl is polymorphic in the number of GXY tandem repeats. In this study, we combined diverse biochemical, genetic, and cellular approaches to determine the role of Lcl domains and GXY repeats polymorphisms on the structural and functional properties of Lcl, as well as on bacterial attachment, aggregation and biofilm formation. Our results indicate that the R-domain is key for assembling Lcl collagenous triple-helices and has a more preponderate role over the C-domain in Lcl adhesin binding properties. We show that Lcl molecules oligomerize to form large supramolecular complexes to which both, R and C-domains are required. Furthermore, we found that the number of GXY tandem repeats encoded in Lcl R-domain correlates positively with the binding capabilities of Lcl and with the attachment and biofilm production capacity of L. pneumophila strains. Accordingly, the number of GXY tandem repeats in Lcl influences the clinical prevalence of L. pneumophila strains. Therefore, the number of Lcl tandem repeats could be considered as a potential predictor for virulence in L. pneumophila isolates.
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spelling pubmed-64602582019-04-25 Polymorphisms of a Collagen-Like Adhesin Contributes to Legionella pneumophila Adhesion, Biofilm Formation Capacity and Clinical Prevalence Abdel-Nour, Mena Su, Han Duncan, Carla Li, Shaopei Raju, Deepa Shamoun, Feras Valton, Marine Ginevra, Christophe Jarraud, Sophie Guyard, Cyril Kerman, Kagan Terebiznik, Mauricio R. Front Microbiol Microbiology Legionellosis is a severe respiratory illness caused by the inhalation of aerosolized water droplets contaminated with the opportunistic pathogen Legionella pneumophila. The ability of L. pneumophila to produce biofilms has been associated with its capacity to colonize and persist in human-made water reservoirs and distribution systems, which are the source of legionellosis outbreaks. Nevertheless, the factors that mediate L. pneumophila biofilm formation are largely unknown. In previous studies we reported that the adhesin Legionella collagen-like protein (Lcl), is required for auto-aggregation, attachment to multiple surfaces and the formation of biofilms. Lcl structure contains three distinguishable regions: An N-terminal region with a predicted signal sequence, a central region containing tandem collagen-like repeats (R-domain) and a C-terminal region (C-domain) with no significant homology to other known proteins. Lcl R-domain encodes tandem repeats of the collagenous tripeptide Gly-Xaa-Yaa (GXY), a motif that is key for the molecular organization of mammalian collagen and mediates the binding of collagenous proteins to different cellular and environmental ligands. Interestingly, Lcl is polymorphic in the number of GXY tandem repeats. In this study, we combined diverse biochemical, genetic, and cellular approaches to determine the role of Lcl domains and GXY repeats polymorphisms on the structural and functional properties of Lcl, as well as on bacterial attachment, aggregation and biofilm formation. Our results indicate that the R-domain is key for assembling Lcl collagenous triple-helices and has a more preponderate role over the C-domain in Lcl adhesin binding properties. We show that Lcl molecules oligomerize to form large supramolecular complexes to which both, R and C-domains are required. Furthermore, we found that the number of GXY tandem repeats encoded in Lcl R-domain correlates positively with the binding capabilities of Lcl and with the attachment and biofilm production capacity of L. pneumophila strains. Accordingly, the number of GXY tandem repeats in Lcl influences the clinical prevalence of L. pneumophila strains. Therefore, the number of Lcl tandem repeats could be considered as a potential predictor for virulence in L. pneumophila isolates. Frontiers Media S.A. 2019-04-05 /pmc/articles/PMC6460258/ /pubmed/31024468 http://dx.doi.org/10.3389/fmicb.2019.00604 Text en Copyright © 2019 Abdel-Nour, Su, Duncan, Li, Raju, Shamoun, Valton, Ginevra, Jarraud, Guyard, Kerman and Terebiznik. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Abdel-Nour, Mena
Su, Han
Duncan, Carla
Li, Shaopei
Raju, Deepa
Shamoun, Feras
Valton, Marine
Ginevra, Christophe
Jarraud, Sophie
Guyard, Cyril
Kerman, Kagan
Terebiznik, Mauricio R.
Polymorphisms of a Collagen-Like Adhesin Contributes to Legionella pneumophila Adhesion, Biofilm Formation Capacity and Clinical Prevalence
title Polymorphisms of a Collagen-Like Adhesin Contributes to Legionella pneumophila Adhesion, Biofilm Formation Capacity and Clinical Prevalence
title_full Polymorphisms of a Collagen-Like Adhesin Contributes to Legionella pneumophila Adhesion, Biofilm Formation Capacity and Clinical Prevalence
title_fullStr Polymorphisms of a Collagen-Like Adhesin Contributes to Legionella pneumophila Adhesion, Biofilm Formation Capacity and Clinical Prevalence
title_full_unstemmed Polymorphisms of a Collagen-Like Adhesin Contributes to Legionella pneumophila Adhesion, Biofilm Formation Capacity and Clinical Prevalence
title_short Polymorphisms of a Collagen-Like Adhesin Contributes to Legionella pneumophila Adhesion, Biofilm Formation Capacity and Clinical Prevalence
title_sort polymorphisms of a collagen-like adhesin contributes to legionella pneumophila adhesion, biofilm formation capacity and clinical prevalence
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6460258/
https://www.ncbi.nlm.nih.gov/pubmed/31024468
http://dx.doi.org/10.3389/fmicb.2019.00604
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