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Human Gut Symbiont Roseburia hominis Promotes and Regulates Innate Immunity

OBJECTIVE: Roseburia hominis is a flagellated gut anaerobic bacterium belonging to the Lachnospiraceae family within the Firmicutes phylum. A significant decrease of R. hominis colonization in the gut of ulcerative colitis patients has recently been demonstrated. In this work, we have investigated t...

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Autores principales: Patterson, Angela M., Mulder, Imke E., Travis, Anthony J., Lan, Annaig, Cerf-Bensussan, Nadine, Gaboriau-Routhiau, Valerie, Garden, Karen, Logan, Elizabeth, Delday, Margaret I., Coutts, Alistair G. P., Monnais, Edouard, Ferraria, Vanessa C., Inoue, Ryo, Grant, George, Aminov, Rustam I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5622956/
https://www.ncbi.nlm.nih.gov/pubmed/29018440
http://dx.doi.org/10.3389/fimmu.2017.01166
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author Patterson, Angela M.
Mulder, Imke E.
Travis, Anthony J.
Lan, Annaig
Cerf-Bensussan, Nadine
Gaboriau-Routhiau, Valerie
Garden, Karen
Logan, Elizabeth
Delday, Margaret I.
Coutts, Alistair G. P.
Monnais, Edouard
Ferraria, Vanessa C.
Inoue, Ryo
Grant, George
Aminov, Rustam I.
author_facet Patterson, Angela M.
Mulder, Imke E.
Travis, Anthony J.
Lan, Annaig
Cerf-Bensussan, Nadine
Gaboriau-Routhiau, Valerie
Garden, Karen
Logan, Elizabeth
Delday, Margaret I.
Coutts, Alistair G. P.
Monnais, Edouard
Ferraria, Vanessa C.
Inoue, Ryo
Grant, George
Aminov, Rustam I.
author_sort Patterson, Angela M.
collection PubMed
description OBJECTIVE: Roseburia hominis is a flagellated gut anaerobic bacterium belonging to the Lachnospiraceae family within the Firmicutes phylum. A significant decrease of R. hominis colonization in the gut of ulcerative colitis patients has recently been demonstrated. In this work, we have investigated the mechanisms of R. hominis–host cross talk using both murine and in vitro models. DESIGN: The complete genome sequence of R. hominis A2-183 was determined. C3H/HeN germ-free mice were mono-colonized with R. hominis, and the host–microbe interaction was studied using histology, transcriptome analyses and FACS. Further investigations were performed in vitro and using the TLR5KO and DSS-colitis murine models. RESULTS: In the bacterium, R. hominis, host gut colonization upregulated genes involved in conjugation/mobilization, metabolism, motility, and chemotaxis. In the host cells, bacterial colonization upregulated genes related to antimicrobial peptides, gut barrier function, toll-like receptors (TLR) signaling, and T cell biology. CD4(+)CD25(+)FoxP3(+) T cell numbers increased in the lamina propria of both mono-associated and conventional mice treated with R. hominis. Treatment with the R. hominis bacterium provided protection against DSS-induced colitis. The role of flagellin in host–bacterium interaction was also investigated. CONCLUSION: Mono-association of mice with R. hominis bacteria results in specific bidirectional gene expression patterns. A set of genes thought to be important for host colonization are induced in R. hominis, while the host cells respond by strengthening gut barrier function and enhancing Treg population expansion, possibly via TLR5-flagellin signaling. Our data reveal the immunomodulatory properties of R. hominis that could be useful for the control and treatment of gut inflammation.
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spelling pubmed-56229562017-10-10 Human Gut Symbiont Roseburia hominis Promotes and Regulates Innate Immunity Patterson, Angela M. Mulder, Imke E. Travis, Anthony J. Lan, Annaig Cerf-Bensussan, Nadine Gaboriau-Routhiau, Valerie Garden, Karen Logan, Elizabeth Delday, Margaret I. Coutts, Alistair G. P. Monnais, Edouard Ferraria, Vanessa C. Inoue, Ryo Grant, George Aminov, Rustam I. Front Immunol Immunology OBJECTIVE: Roseburia hominis is a flagellated gut anaerobic bacterium belonging to the Lachnospiraceae family within the Firmicutes phylum. A significant decrease of R. hominis colonization in the gut of ulcerative colitis patients has recently been demonstrated. In this work, we have investigated the mechanisms of R. hominis–host cross talk using both murine and in vitro models. DESIGN: The complete genome sequence of R. hominis A2-183 was determined. C3H/HeN germ-free mice were mono-colonized with R. hominis, and the host–microbe interaction was studied using histology, transcriptome analyses and FACS. Further investigations were performed in vitro and using the TLR5KO and DSS-colitis murine models. RESULTS: In the bacterium, R. hominis, host gut colonization upregulated genes involved in conjugation/mobilization, metabolism, motility, and chemotaxis. In the host cells, bacterial colonization upregulated genes related to antimicrobial peptides, gut barrier function, toll-like receptors (TLR) signaling, and T cell biology. CD4(+)CD25(+)FoxP3(+) T cell numbers increased in the lamina propria of both mono-associated and conventional mice treated with R. hominis. Treatment with the R. hominis bacterium provided protection against DSS-induced colitis. The role of flagellin in host–bacterium interaction was also investigated. CONCLUSION: Mono-association of mice with R. hominis bacteria results in specific bidirectional gene expression patterns. A set of genes thought to be important for host colonization are induced in R. hominis, while the host cells respond by strengthening gut barrier function and enhancing Treg population expansion, possibly via TLR5-flagellin signaling. Our data reveal the immunomodulatory properties of R. hominis that could be useful for the control and treatment of gut inflammation. Frontiers Media S.A. 2017-09-26 /pmc/articles/PMC5622956/ /pubmed/29018440 http://dx.doi.org/10.3389/fimmu.2017.01166 Text en Copyright © 2017 Patterson, Mulder, Travis, Lan, Cerf-Bensussan, Gaboriau-Routhiau, Garden, Logan, Delday, Coutts, Monnais, Ferraria, Inoue, Grant and Aminov. 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) or licensor 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 Immunology
Patterson, Angela M.
Mulder, Imke E.
Travis, Anthony J.
Lan, Annaig
Cerf-Bensussan, Nadine
Gaboriau-Routhiau, Valerie
Garden, Karen
Logan, Elizabeth
Delday, Margaret I.
Coutts, Alistair G. P.
Monnais, Edouard
Ferraria, Vanessa C.
Inoue, Ryo
Grant, George
Aminov, Rustam I.
Human Gut Symbiont Roseburia hominis Promotes and Regulates Innate Immunity
title Human Gut Symbiont Roseburia hominis Promotes and Regulates Innate Immunity
title_full Human Gut Symbiont Roseburia hominis Promotes and Regulates Innate Immunity
title_fullStr Human Gut Symbiont Roseburia hominis Promotes and Regulates Innate Immunity
title_full_unstemmed Human Gut Symbiont Roseburia hominis Promotes and Regulates Innate Immunity
title_short Human Gut Symbiont Roseburia hominis Promotes and Regulates Innate Immunity
title_sort human gut symbiont roseburia hominis promotes and regulates innate immunity
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5622956/
https://www.ncbi.nlm.nih.gov/pubmed/29018440
http://dx.doi.org/10.3389/fimmu.2017.01166
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