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Epithelial IL-22RA1-Mediated Fucosylation Promotes Intestinal Colonization Resistance to an Opportunistic Pathogen

Our intestinal microbiota harbors a diverse microbial community, often containing opportunistic bacteria with virulence potential. However, mutualistic host-microbial interactions prevent disease by opportunistic pathogens through poorly understood mechanisms. We show that the epithelial interleukin...

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Autores principales: Pham, Tu Anh N., Clare, Simon, Goulding, David, Arasteh, Julia M., Stares, Mark D., Browne, Hilary P., Keane, Jacqueline A., Page, Andrew J., Kumasaka, Natsuhiko, Kane, Leanne, Mottram, Lynda, Harcourt, Katherine, Hale, Christine, Arends, Mark J., Gaffney, Daniel J., Dougan, Gordon, Lawley, Trevor D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4190086/
https://www.ncbi.nlm.nih.gov/pubmed/25263220
http://dx.doi.org/10.1016/j.chom.2014.08.017
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author Pham, Tu Anh N.
Clare, Simon
Goulding, David
Arasteh, Julia M.
Stares, Mark D.
Browne, Hilary P.
Keane, Jacqueline A.
Page, Andrew J.
Kumasaka, Natsuhiko
Kane, Leanne
Mottram, Lynda
Harcourt, Katherine
Hale, Christine
Arends, Mark J.
Gaffney, Daniel J.
Dougan, Gordon
Lawley, Trevor D.
author_facet Pham, Tu Anh N.
Clare, Simon
Goulding, David
Arasteh, Julia M.
Stares, Mark D.
Browne, Hilary P.
Keane, Jacqueline A.
Page, Andrew J.
Kumasaka, Natsuhiko
Kane, Leanne
Mottram, Lynda
Harcourt, Katherine
Hale, Christine
Arends, Mark J.
Gaffney, Daniel J.
Dougan, Gordon
Lawley, Trevor D.
author_sort Pham, Tu Anh N.
collection PubMed
description Our intestinal microbiota harbors a diverse microbial community, often containing opportunistic bacteria with virulence potential. However, mutualistic host-microbial interactions prevent disease by opportunistic pathogens through poorly understood mechanisms. We show that the epithelial interleukin-22 receptor IL-22RA1 protects against lethal Citrobacter rodentium infection and chemical-induced colitis by promoting colonization resistance against an intestinal opportunistic bacterium, Enterococcus faecalis. Susceptibility of Il22ra1(−/−) mice to C. rodentium was associated with preferential expansion and epithelial translocation of pathogenic E. faecalis during severe microbial dysbiosis and was ameloriated with antibiotics active against E. faecalis. RNA sequencing analyses of primary colonic organoids showed that IL-22RA1 signaling promotes intestinal fucosylation via induction of the fucosyltransferase Fut2. Additionally, administration of fucosylated oligosaccharides to C. rodentium-challenged Il22ra1(−/−) mice attenuated infection and promoted E. faecalis colonization resistance by restoring the diversity of anaerobic commensal symbionts. These results support a model whereby IL-22RA1 enhances host-microbiota mutualism to limit detrimental overcolonization by opportunistic pathogens.
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spelling pubmed-41900862014-10-13 Epithelial IL-22RA1-Mediated Fucosylation Promotes Intestinal Colonization Resistance to an Opportunistic Pathogen Pham, Tu Anh N. Clare, Simon Goulding, David Arasteh, Julia M. Stares, Mark D. Browne, Hilary P. Keane, Jacqueline A. Page, Andrew J. Kumasaka, Natsuhiko Kane, Leanne Mottram, Lynda Harcourt, Katherine Hale, Christine Arends, Mark J. Gaffney, Daniel J. Dougan, Gordon Lawley, Trevor D. Cell Host Microbe Article Our intestinal microbiota harbors a diverse microbial community, often containing opportunistic bacteria with virulence potential. However, mutualistic host-microbial interactions prevent disease by opportunistic pathogens through poorly understood mechanisms. We show that the epithelial interleukin-22 receptor IL-22RA1 protects against lethal Citrobacter rodentium infection and chemical-induced colitis by promoting colonization resistance against an intestinal opportunistic bacterium, Enterococcus faecalis. Susceptibility of Il22ra1(−/−) mice to C. rodentium was associated with preferential expansion and epithelial translocation of pathogenic E. faecalis during severe microbial dysbiosis and was ameloriated with antibiotics active against E. faecalis. RNA sequencing analyses of primary colonic organoids showed that IL-22RA1 signaling promotes intestinal fucosylation via induction of the fucosyltransferase Fut2. Additionally, administration of fucosylated oligosaccharides to C. rodentium-challenged Il22ra1(−/−) mice attenuated infection and promoted E. faecalis colonization resistance by restoring the diversity of anaerobic commensal symbionts. These results support a model whereby IL-22RA1 enhances host-microbiota mutualism to limit detrimental overcolonization by opportunistic pathogens. Cell Press 2014-10-08 /pmc/articles/PMC4190086/ /pubmed/25263220 http://dx.doi.org/10.1016/j.chom.2014.08.017 Text en © 2014 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Article
Pham, Tu Anh N.
Clare, Simon
Goulding, David
Arasteh, Julia M.
Stares, Mark D.
Browne, Hilary P.
Keane, Jacqueline A.
Page, Andrew J.
Kumasaka, Natsuhiko
Kane, Leanne
Mottram, Lynda
Harcourt, Katherine
Hale, Christine
Arends, Mark J.
Gaffney, Daniel J.
Dougan, Gordon
Lawley, Trevor D.
Epithelial IL-22RA1-Mediated Fucosylation Promotes Intestinal Colonization Resistance to an Opportunistic Pathogen
title Epithelial IL-22RA1-Mediated Fucosylation Promotes Intestinal Colonization Resistance to an Opportunistic Pathogen
title_full Epithelial IL-22RA1-Mediated Fucosylation Promotes Intestinal Colonization Resistance to an Opportunistic Pathogen
title_fullStr Epithelial IL-22RA1-Mediated Fucosylation Promotes Intestinal Colonization Resistance to an Opportunistic Pathogen
title_full_unstemmed Epithelial IL-22RA1-Mediated Fucosylation Promotes Intestinal Colonization Resistance to an Opportunistic Pathogen
title_short Epithelial IL-22RA1-Mediated Fucosylation Promotes Intestinal Colonization Resistance to an Opportunistic Pathogen
title_sort epithelial il-22ra1-mediated fucosylation promotes intestinal colonization resistance to an opportunistic pathogen
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4190086/
https://www.ncbi.nlm.nih.gov/pubmed/25263220
http://dx.doi.org/10.1016/j.chom.2014.08.017
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