Cargando…

The Trw Type IV Secretion System of Bartonella Mediates Host-Specific Adhesion to Erythrocytes

Bacterial pathogens typically infect only a limited range of hosts; however, the genetic mechanisms governing host-specificity are poorly understood. The α-proteobacterial genus Bartonella comprises 21 species that cause host-specific intraerythrocytic bacteremia as hallmark of infection in their re...

Descripción completa

Detalles Bibliográficos
Autores principales: Vayssier-Taussat, Muriel, Le Rhun, Danielle, Deng, Hong Kuan, Biville, Francis, Cescau, Sandra, Danchin, Antoine, Marignac, Geneviève, Lenaour, Evelyne, Boulouis, Henri Jean, Mavris, Maria, Arnaud, Lionel, Yang, Huanming, Wang, Jing, Quebatte, Maxime, Engel, Philipp, Saenz, Henri, Dehio, Christoph
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2883598/
https://www.ncbi.nlm.nih.gov/pubmed/20548954
http://dx.doi.org/10.1371/journal.ppat.1000946
_version_ 1782182268283912192
author Vayssier-Taussat, Muriel
Le Rhun, Danielle
Deng, Hong Kuan
Biville, Francis
Cescau, Sandra
Danchin, Antoine
Marignac, Geneviève
Lenaour, Evelyne
Boulouis, Henri Jean
Mavris, Maria
Arnaud, Lionel
Yang, Huanming
Wang, Jing
Quebatte, Maxime
Engel, Philipp
Saenz, Henri
Dehio, Christoph
author_facet Vayssier-Taussat, Muriel
Le Rhun, Danielle
Deng, Hong Kuan
Biville, Francis
Cescau, Sandra
Danchin, Antoine
Marignac, Geneviève
Lenaour, Evelyne
Boulouis, Henri Jean
Mavris, Maria
Arnaud, Lionel
Yang, Huanming
Wang, Jing
Quebatte, Maxime
Engel, Philipp
Saenz, Henri
Dehio, Christoph
author_sort Vayssier-Taussat, Muriel
collection PubMed
description Bacterial pathogens typically infect only a limited range of hosts; however, the genetic mechanisms governing host-specificity are poorly understood. The α-proteobacterial genus Bartonella comprises 21 species that cause host-specific intraerythrocytic bacteremia as hallmark of infection in their respective mammalian reservoirs, including the human-specific pathogens Bartonella quintana and Bartonella bacilliformis that cause trench fever and Oroya fever, respectively. Here, we have identified bacterial factors that mediate host-specific erythrocyte colonization in the mammalian reservoirs. Using mouse-specific Bartonella birtlesii, human-specific Bartonella quintana, cat-specific Bartonella henselae and rat-specific Bartonella tribocorum, we established in vitro adhesion and invasion assays with isolated erythrocytes that fully reproduce the host-specificity of erythrocyte infection as observed in vivo. By signature-tagged mutagenesis of B. birtlesii and mutant selection in a mouse infection model we identified mutants impaired in establishing intraerythrocytic bacteremia. Among 45 abacteremic mutants, five failed to adhere to and invade mouse erythrocytes in vitro. The corresponding genes encode components of the type IV secretion system (T4SS) Trw, demonstrating that this virulence factor laterally acquired by the Bartonella lineage is directly involved in adherence to erythrocytes. Strikingly, ectopic expression of Trw of rat-specific B. tribocorum in cat-specific B. henselae or human-specific B. quintana expanded their host range for erythrocyte infection to rat, demonstrating that Trw mediates host-specific erythrocyte infection. A molecular evolutionary analysis of the trw locus further indicated that the variable, surface-located TrwL and TrwJ might represent the T4SS components that determine host-specificity of erythrocyte parasitism. In conclusion, we show that the laterally acquired Trw T4SS diversified in the Bartonella lineage to facilitate host-restricted adhesion to erythrocytes in a wide range of mammals.
format Text
id pubmed-2883598
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-28835982010-06-14 The Trw Type IV Secretion System of Bartonella Mediates Host-Specific Adhesion to Erythrocytes Vayssier-Taussat, Muriel Le Rhun, Danielle Deng, Hong Kuan Biville, Francis Cescau, Sandra Danchin, Antoine Marignac, Geneviève Lenaour, Evelyne Boulouis, Henri Jean Mavris, Maria Arnaud, Lionel Yang, Huanming Wang, Jing Quebatte, Maxime Engel, Philipp Saenz, Henri Dehio, Christoph PLoS Pathog Research Article Bacterial pathogens typically infect only a limited range of hosts; however, the genetic mechanisms governing host-specificity are poorly understood. The α-proteobacterial genus Bartonella comprises 21 species that cause host-specific intraerythrocytic bacteremia as hallmark of infection in their respective mammalian reservoirs, including the human-specific pathogens Bartonella quintana and Bartonella bacilliformis that cause trench fever and Oroya fever, respectively. Here, we have identified bacterial factors that mediate host-specific erythrocyte colonization in the mammalian reservoirs. Using mouse-specific Bartonella birtlesii, human-specific Bartonella quintana, cat-specific Bartonella henselae and rat-specific Bartonella tribocorum, we established in vitro adhesion and invasion assays with isolated erythrocytes that fully reproduce the host-specificity of erythrocyte infection as observed in vivo. By signature-tagged mutagenesis of B. birtlesii and mutant selection in a mouse infection model we identified mutants impaired in establishing intraerythrocytic bacteremia. Among 45 abacteremic mutants, five failed to adhere to and invade mouse erythrocytes in vitro. The corresponding genes encode components of the type IV secretion system (T4SS) Trw, demonstrating that this virulence factor laterally acquired by the Bartonella lineage is directly involved in adherence to erythrocytes. Strikingly, ectopic expression of Trw of rat-specific B. tribocorum in cat-specific B. henselae or human-specific B. quintana expanded their host range for erythrocyte infection to rat, demonstrating that Trw mediates host-specific erythrocyte infection. A molecular evolutionary analysis of the trw locus further indicated that the variable, surface-located TrwL and TrwJ might represent the T4SS components that determine host-specificity of erythrocyte parasitism. In conclusion, we show that the laterally acquired Trw T4SS diversified in the Bartonella lineage to facilitate host-restricted adhesion to erythrocytes in a wide range of mammals. Public Library of Science 2010-06-10 /pmc/articles/PMC2883598/ /pubmed/20548954 http://dx.doi.org/10.1371/journal.ppat.1000946 Text en Vayssier-Taussat 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
Vayssier-Taussat, Muriel
Le Rhun, Danielle
Deng, Hong Kuan
Biville, Francis
Cescau, Sandra
Danchin, Antoine
Marignac, Geneviève
Lenaour, Evelyne
Boulouis, Henri Jean
Mavris, Maria
Arnaud, Lionel
Yang, Huanming
Wang, Jing
Quebatte, Maxime
Engel, Philipp
Saenz, Henri
Dehio, Christoph
The Trw Type IV Secretion System of Bartonella Mediates Host-Specific Adhesion to Erythrocytes
title The Trw Type IV Secretion System of Bartonella Mediates Host-Specific Adhesion to Erythrocytes
title_full The Trw Type IV Secretion System of Bartonella Mediates Host-Specific Adhesion to Erythrocytes
title_fullStr The Trw Type IV Secretion System of Bartonella Mediates Host-Specific Adhesion to Erythrocytes
title_full_unstemmed The Trw Type IV Secretion System of Bartonella Mediates Host-Specific Adhesion to Erythrocytes
title_short The Trw Type IV Secretion System of Bartonella Mediates Host-Specific Adhesion to Erythrocytes
title_sort trw type iv secretion system of bartonella mediates host-specific adhesion to erythrocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2883598/
https://www.ncbi.nlm.nih.gov/pubmed/20548954
http://dx.doi.org/10.1371/journal.ppat.1000946
work_keys_str_mv AT vayssiertaussatmuriel thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT lerhundanielle thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT denghongkuan thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT bivillefrancis thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT cescausandra thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT danchinantoine thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT marignacgenevieve thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT lenaourevelyne thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT boulouishenrijean thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT mavrismaria thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT arnaudlionel thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT yanghuanming thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT wangjing thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT quebattemaxime thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT engelphilipp thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT saenzhenri thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT dehiochristoph thetrwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT vayssiertaussatmuriel trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT lerhundanielle trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT denghongkuan trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT bivillefrancis trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT cescausandra trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT danchinantoine trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT marignacgenevieve trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT lenaourevelyne trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT boulouishenrijean trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT mavrismaria trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT arnaudlionel trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT yanghuanming trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT wangjing trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT quebattemaxime trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT engelphilipp trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT saenzhenri trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes
AT dehiochristoph trwtypeivsecretionsystemofbartonellamediateshostspecificadhesiontoerythrocytes