Cargando…

Differentiation of Crohn’s Disease-Associated Isolates from Other Pathogenic Escherichia coli by Fimbrial Adhesion under Shear Force

Shear force exerted on uropathogenic Escherichia coli adhering to surfaces makes type-1 fimbriae stretch out like springs to catch on to mannosidic receptors. This mechanism is initiated by a disruption of the quaternary interactions between the lectin and the pilin of the two-domain FimH adhesin an...

Descripción completa

Detalles Bibliográficos
Autores principales: Szunerits, Sabine, Zagorodko, Oleksandr, Cogez, Virginie, Dumych, Tetiana, Chalopin, Thibaut, Alvarez Dorta, Dimitri, Sivignon, Adeline, Barnich, Nicolas, Harduin-Lepers, Anne, Larroulet, Iban, Yanguas Serrano, Aritz, Siriwardena, Aloysius, Pesquera, Amaia, Zurutuza, Amaia, Gouin, Sébastien G., Boukherroub, Rabah, Bouckaert, Julie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4929528/
https://www.ncbi.nlm.nih.gov/pubmed/27043645
http://dx.doi.org/10.3390/biology5020014
_version_ 1782440628276166656
author Szunerits, Sabine
Zagorodko, Oleksandr
Cogez, Virginie
Dumych, Tetiana
Chalopin, Thibaut
Alvarez Dorta, Dimitri
Sivignon, Adeline
Barnich, Nicolas
Harduin-Lepers, Anne
Larroulet, Iban
Yanguas Serrano, Aritz
Siriwardena, Aloysius
Pesquera, Amaia
Zurutuza, Amaia
Gouin, Sébastien G.
Boukherroub, Rabah
Bouckaert, Julie
author_facet Szunerits, Sabine
Zagorodko, Oleksandr
Cogez, Virginie
Dumych, Tetiana
Chalopin, Thibaut
Alvarez Dorta, Dimitri
Sivignon, Adeline
Barnich, Nicolas
Harduin-Lepers, Anne
Larroulet, Iban
Yanguas Serrano, Aritz
Siriwardena, Aloysius
Pesquera, Amaia
Zurutuza, Amaia
Gouin, Sébastien G.
Boukherroub, Rabah
Bouckaert, Julie
author_sort Szunerits, Sabine
collection PubMed
description Shear force exerted on uropathogenic Escherichia coli adhering to surfaces makes type-1 fimbriae stretch out like springs to catch on to mannosidic receptors. This mechanism is initiated by a disruption of the quaternary interactions between the lectin and the pilin of the two-domain FimH adhesin and transduces allosterically to the mannose-binding pocket of FimH to increase its affinity. Mannose-specific adhesion of 14 E. coli pathovars was measured under flow, using surface plasmon resonance detection on functionalized graphene-coated gold interfaces. Increasing the shear had important differential consequences on bacterial adhesion. Adherent-invasive E. coli, isolated from the feces and biopsies of Crohn’s disease patients, consistently changed their adhesion behavior less under shear and displayed lower SPR signals, compared to E. coli opportunistically infecting the urinary tract, intestines or loci of knee and hip prostheses. We exemplified this further with the extreme behaviors of the reference strains UTI89 and LF82. Whereas their FimA major pilins have identical sequences, FimH of LF82 E. coli is marked by the Thr158Pro mutation. Positioned in the inter-domain region known to carry hot spots of mutations in E. coli pathotypes, residue 158 is indicated to play a structural role in the allosteric regulation of type-1 fimbriae-mediated bacterial adhesion.
format Online
Article
Text
id pubmed-4929528
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-49295282016-07-07 Differentiation of Crohn’s Disease-Associated Isolates from Other Pathogenic Escherichia coli by Fimbrial Adhesion under Shear Force Szunerits, Sabine Zagorodko, Oleksandr Cogez, Virginie Dumych, Tetiana Chalopin, Thibaut Alvarez Dorta, Dimitri Sivignon, Adeline Barnich, Nicolas Harduin-Lepers, Anne Larroulet, Iban Yanguas Serrano, Aritz Siriwardena, Aloysius Pesquera, Amaia Zurutuza, Amaia Gouin, Sébastien G. Boukherroub, Rabah Bouckaert, Julie Biology (Basel) Article Shear force exerted on uropathogenic Escherichia coli adhering to surfaces makes type-1 fimbriae stretch out like springs to catch on to mannosidic receptors. This mechanism is initiated by a disruption of the quaternary interactions between the lectin and the pilin of the two-domain FimH adhesin and transduces allosterically to the mannose-binding pocket of FimH to increase its affinity. Mannose-specific adhesion of 14 E. coli pathovars was measured under flow, using surface plasmon resonance detection on functionalized graphene-coated gold interfaces. Increasing the shear had important differential consequences on bacterial adhesion. Adherent-invasive E. coli, isolated from the feces and biopsies of Crohn’s disease patients, consistently changed their adhesion behavior less under shear and displayed lower SPR signals, compared to E. coli opportunistically infecting the urinary tract, intestines or loci of knee and hip prostheses. We exemplified this further with the extreme behaviors of the reference strains UTI89 and LF82. Whereas their FimA major pilins have identical sequences, FimH of LF82 E. coli is marked by the Thr158Pro mutation. Positioned in the inter-domain region known to carry hot spots of mutations in E. coli pathotypes, residue 158 is indicated to play a structural role in the allosteric regulation of type-1 fimbriae-mediated bacterial adhesion. MDPI 2016-04-01 /pmc/articles/PMC4929528/ /pubmed/27043645 http://dx.doi.org/10.3390/biology5020014 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Szunerits, Sabine
Zagorodko, Oleksandr
Cogez, Virginie
Dumych, Tetiana
Chalopin, Thibaut
Alvarez Dorta, Dimitri
Sivignon, Adeline
Barnich, Nicolas
Harduin-Lepers, Anne
Larroulet, Iban
Yanguas Serrano, Aritz
Siriwardena, Aloysius
Pesquera, Amaia
Zurutuza, Amaia
Gouin, Sébastien G.
Boukherroub, Rabah
Bouckaert, Julie
Differentiation of Crohn’s Disease-Associated Isolates from Other Pathogenic Escherichia coli by Fimbrial Adhesion under Shear Force
title Differentiation of Crohn’s Disease-Associated Isolates from Other Pathogenic Escherichia coli by Fimbrial Adhesion under Shear Force
title_full Differentiation of Crohn’s Disease-Associated Isolates from Other Pathogenic Escherichia coli by Fimbrial Adhesion under Shear Force
title_fullStr Differentiation of Crohn’s Disease-Associated Isolates from Other Pathogenic Escherichia coli by Fimbrial Adhesion under Shear Force
title_full_unstemmed Differentiation of Crohn’s Disease-Associated Isolates from Other Pathogenic Escherichia coli by Fimbrial Adhesion under Shear Force
title_short Differentiation of Crohn’s Disease-Associated Isolates from Other Pathogenic Escherichia coli by Fimbrial Adhesion under Shear Force
title_sort differentiation of crohn’s disease-associated isolates from other pathogenic escherichia coli by fimbrial adhesion under shear force
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4929528/
https://www.ncbi.nlm.nih.gov/pubmed/27043645
http://dx.doi.org/10.3390/biology5020014
work_keys_str_mv AT szuneritssabine differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT zagorodkooleksandr differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT cogezvirginie differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT dumychtetiana differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT chalopinthibaut differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT alvarezdortadimitri differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT sivignonadeline differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT barnichnicolas differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT harduinlepersanne differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT larrouletiban differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT yanguasserranoaritz differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT siriwardenaaloysius differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT pesqueraamaia differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT zurutuzaamaia differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT gouinsebastieng differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT boukherroubrabah differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce
AT bouckaertjulie differentiationofcrohnsdiseaseassociatedisolatesfromotherpathogenicescherichiacolibyfimbrialadhesionundershearforce