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A stealth adhesion factor contributes to Vibrio vulnificus pathogenicity: Flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation

The tad operons encode the machinery required for adhesive Flp (fimbrial low-molecular-weight protein) pili biogenesis. Vibrio vulnificus, an opportunistic pathogen, harbors three distinct tad loci. Among them, only tad1 locus was highly upregulated in in vivo growing bacteria compared to in vitro c...

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Autores principales: Duong-Nu, Tra-My, Jeong, Kwangjoon, Hong, Seol Hee, Puth, Sao, Kim, Soo Young, Tan, Wenzhi, Lee, Kwang Ho, Lee, Shee Eun, Rhee, Joon Haeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6748444/
https://www.ncbi.nlm.nih.gov/pubmed/31437245
http://dx.doi.org/10.1371/journal.ppat.1007767
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author Duong-Nu, Tra-My
Jeong, Kwangjoon
Hong, Seol Hee
Puth, Sao
Kim, Soo Young
Tan, Wenzhi
Lee, Kwang Ho
Lee, Shee Eun
Rhee, Joon Haeng
author_facet Duong-Nu, Tra-My
Jeong, Kwangjoon
Hong, Seol Hee
Puth, Sao
Kim, Soo Young
Tan, Wenzhi
Lee, Kwang Ho
Lee, Shee Eun
Rhee, Joon Haeng
author_sort Duong-Nu, Tra-My
collection PubMed
description The tad operons encode the machinery required for adhesive Flp (fimbrial low-molecular-weight protein) pili biogenesis. Vibrio vulnificus, an opportunistic pathogen, harbors three distinct tad loci. Among them, only tad1 locus was highly upregulated in in vivo growing bacteria compared to in vitro culture condition. To understand the pathogenic roles of the three tad loci during infection, we constructed single, double and triple tad loci deletion mutants. Interestingly, only the Δtad123 triple mutant cells exhibited significantly decreased lethality in mice. Ultrastructural observations revealed short, thin filamentous projections disappeared on the Δtad123 mutant cells. Since the pilin was paradoxically non-immunogenic, a V5 tag was fused to Flp to visualize the pilin protein by using immunogold EM and immunofluorescence microscopy. The Δtad123 mutant cells showed attenuated host cell adhesion, decreased biofilm formation, delayed RtxA1 exotoxin secretion and subsequently impaired translocation across the intestinal epithelium compared to wild type, which could be partially complemented with each wild type operon. The Δtad123 mutant was susceptible to complement-mediated bacteriolysis, predominantly via the alternative pathway, suggesting stealth hiding role of the Tad pili. Complement depletion by treating with anti-C5 antibody rescued the viable count of Δtad123 in infected mouse bloodstream to the level comparable to wild type strain. Taken together, all three tad loci cooperate to confer successful invasion of V. vulnificus into deeper tissue and evasion from host defense mechanisms, ultimately resulting in septicemia.
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spelling pubmed-67484442019-09-27 A stealth adhesion factor contributes to Vibrio vulnificus pathogenicity: Flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation Duong-Nu, Tra-My Jeong, Kwangjoon Hong, Seol Hee Puth, Sao Kim, Soo Young Tan, Wenzhi Lee, Kwang Ho Lee, Shee Eun Rhee, Joon Haeng PLoS Pathog Research Article The tad operons encode the machinery required for adhesive Flp (fimbrial low-molecular-weight protein) pili biogenesis. Vibrio vulnificus, an opportunistic pathogen, harbors three distinct tad loci. Among them, only tad1 locus was highly upregulated in in vivo growing bacteria compared to in vitro culture condition. To understand the pathogenic roles of the three tad loci during infection, we constructed single, double and triple tad loci deletion mutants. Interestingly, only the Δtad123 triple mutant cells exhibited significantly decreased lethality in mice. Ultrastructural observations revealed short, thin filamentous projections disappeared on the Δtad123 mutant cells. Since the pilin was paradoxically non-immunogenic, a V5 tag was fused to Flp to visualize the pilin protein by using immunogold EM and immunofluorescence microscopy. The Δtad123 mutant cells showed attenuated host cell adhesion, decreased biofilm formation, delayed RtxA1 exotoxin secretion and subsequently impaired translocation across the intestinal epithelium compared to wild type, which could be partially complemented with each wild type operon. The Δtad123 mutant was susceptible to complement-mediated bacteriolysis, predominantly via the alternative pathway, suggesting stealth hiding role of the Tad pili. Complement depletion by treating with anti-C5 antibody rescued the viable count of Δtad123 in infected mouse bloodstream to the level comparable to wild type strain. Taken together, all three tad loci cooperate to confer successful invasion of V. vulnificus into deeper tissue and evasion from host defense mechanisms, ultimately resulting in septicemia. Public Library of Science 2019-08-22 /pmc/articles/PMC6748444/ /pubmed/31437245 http://dx.doi.org/10.1371/journal.ppat.1007767 Text en © 2019 Duong-Nu 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Duong-Nu, Tra-My
Jeong, Kwangjoon
Hong, Seol Hee
Puth, Sao
Kim, Soo Young
Tan, Wenzhi
Lee, Kwang Ho
Lee, Shee Eun
Rhee, Joon Haeng
A stealth adhesion factor contributes to Vibrio vulnificus pathogenicity: Flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation
title A stealth adhesion factor contributes to Vibrio vulnificus pathogenicity: Flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation
title_full A stealth adhesion factor contributes to Vibrio vulnificus pathogenicity: Flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation
title_fullStr A stealth adhesion factor contributes to Vibrio vulnificus pathogenicity: Flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation
title_full_unstemmed A stealth adhesion factor contributes to Vibrio vulnificus pathogenicity: Flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation
title_short A stealth adhesion factor contributes to Vibrio vulnificus pathogenicity: Flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation
title_sort stealth adhesion factor contributes to vibrio vulnificus pathogenicity: flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6748444/
https://www.ncbi.nlm.nih.gov/pubmed/31437245
http://dx.doi.org/10.1371/journal.ppat.1007767
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