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Rotavirus susceptibility of antibiotic-treated mice ascribed to diminished expression of interleukin-22

The commensal microbiota regulates susceptibility to enteric pathogens by fine-tuning mucosal innate immune responses, but how susceptibility to enteric viruses is shaped by the microbiota remains incompletely understood. Past reports have indicated that commensal bacteria may either promote or repr...

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Autores principales: Schnepf, Daniel, Hernandez, Pedro, Mahlakõiv, Tanel, Crotta, Stefania, Sullender, Meagan E., Peterson, Stefan T., Ohnemus, Annette, Michiels, Camille, Gentle, Ian, Dumoutier, Laure, Reis, Celso A., Diefenbach, Andreas, Wack, Andreas, Baldridge, Megan T., Staeheli, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8360596/
https://www.ncbi.nlm.nih.gov/pubmed/34383769
http://dx.doi.org/10.1371/journal.pone.0247738
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author Schnepf, Daniel
Hernandez, Pedro
Mahlakõiv, Tanel
Crotta, Stefania
Sullender, Meagan E.
Peterson, Stefan T.
Ohnemus, Annette
Michiels, Camille
Gentle, Ian
Dumoutier, Laure
Reis, Celso A.
Diefenbach, Andreas
Wack, Andreas
Baldridge, Megan T.
Staeheli, Peter
author_facet Schnepf, Daniel
Hernandez, Pedro
Mahlakõiv, Tanel
Crotta, Stefania
Sullender, Meagan E.
Peterson, Stefan T.
Ohnemus, Annette
Michiels, Camille
Gentle, Ian
Dumoutier, Laure
Reis, Celso A.
Diefenbach, Andreas
Wack, Andreas
Baldridge, Megan T.
Staeheli, Peter
author_sort Schnepf, Daniel
collection PubMed
description The commensal microbiota regulates susceptibility to enteric pathogens by fine-tuning mucosal innate immune responses, but how susceptibility to enteric viruses is shaped by the microbiota remains incompletely understood. Past reports have indicated that commensal bacteria may either promote or repress rotavirus replication in the small intestine of mice. We now report that rotavirus replicated more efficiently in the intestines of germ-free and antibiotic-treated mice compared to animals with an unmodified microbiota. Antibiotic treatment also facilitated rotavirus replication in type I and type III interferon (IFN) receptor-deficient mice, revealing IFN-independent proviral effects. Expression of interleukin-22 (IL-22) was strongly diminished in the intestine of antibiotic-treated mice. Treatment with exogenous IL-22 blocked rotavirus replication in microbiota-depleted wild-type and Stat1(-/-) mice, demonstrating that the antiviral effect of IL-22 in animals with altered microbiome is not dependent on IFN signaling. In antibiotic-treated animals, IL-22-induced a specific set of genes including Fut2, encoding fucosyl-transferase 2 that participates in the biosynthesis of fucosylated glycans which can mediate rotavirus binding. Interestingly, IL-22 also blocked rotavirus replication in antibiotic-treated Fut2(-/-) mice. Furthermore, IL-22 inhibited rotavirus replication in antibiotic-treated mice lacking key molecules of the necroptosis or pyroptosis pathways of programmed cell death. Taken together, our results demonstrate that IL-22 determines rotavirus susceptibility of antibiotic-treated mice, yet the IL-22-induced effector molecules conferring rotavirus resistance remain elusive.
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spelling pubmed-83605962021-08-13 Rotavirus susceptibility of antibiotic-treated mice ascribed to diminished expression of interleukin-22 Schnepf, Daniel Hernandez, Pedro Mahlakõiv, Tanel Crotta, Stefania Sullender, Meagan E. Peterson, Stefan T. Ohnemus, Annette Michiels, Camille Gentle, Ian Dumoutier, Laure Reis, Celso A. Diefenbach, Andreas Wack, Andreas Baldridge, Megan T. Staeheli, Peter PLoS One Research Article The commensal microbiota regulates susceptibility to enteric pathogens by fine-tuning mucosal innate immune responses, but how susceptibility to enteric viruses is shaped by the microbiota remains incompletely understood. Past reports have indicated that commensal bacteria may either promote or repress rotavirus replication in the small intestine of mice. We now report that rotavirus replicated more efficiently in the intestines of germ-free and antibiotic-treated mice compared to animals with an unmodified microbiota. Antibiotic treatment also facilitated rotavirus replication in type I and type III interferon (IFN) receptor-deficient mice, revealing IFN-independent proviral effects. Expression of interleukin-22 (IL-22) was strongly diminished in the intestine of antibiotic-treated mice. Treatment with exogenous IL-22 blocked rotavirus replication in microbiota-depleted wild-type and Stat1(-/-) mice, demonstrating that the antiviral effect of IL-22 in animals with altered microbiome is not dependent on IFN signaling. In antibiotic-treated animals, IL-22-induced a specific set of genes including Fut2, encoding fucosyl-transferase 2 that participates in the biosynthesis of fucosylated glycans which can mediate rotavirus binding. Interestingly, IL-22 also blocked rotavirus replication in antibiotic-treated Fut2(-/-) mice. Furthermore, IL-22 inhibited rotavirus replication in antibiotic-treated mice lacking key molecules of the necroptosis or pyroptosis pathways of programmed cell death. Taken together, our results demonstrate that IL-22 determines rotavirus susceptibility of antibiotic-treated mice, yet the IL-22-induced effector molecules conferring rotavirus resistance remain elusive. Public Library of Science 2021-08-12 /pmc/articles/PMC8360596/ /pubmed/34383769 http://dx.doi.org/10.1371/journal.pone.0247738 Text en © 2021 Schnepf et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Schnepf, Daniel
Hernandez, Pedro
Mahlakõiv, Tanel
Crotta, Stefania
Sullender, Meagan E.
Peterson, Stefan T.
Ohnemus, Annette
Michiels, Camille
Gentle, Ian
Dumoutier, Laure
Reis, Celso A.
Diefenbach, Andreas
Wack, Andreas
Baldridge, Megan T.
Staeheli, Peter
Rotavirus susceptibility of antibiotic-treated mice ascribed to diminished expression of interleukin-22
title Rotavirus susceptibility of antibiotic-treated mice ascribed to diminished expression of interleukin-22
title_full Rotavirus susceptibility of antibiotic-treated mice ascribed to diminished expression of interleukin-22
title_fullStr Rotavirus susceptibility of antibiotic-treated mice ascribed to diminished expression of interleukin-22
title_full_unstemmed Rotavirus susceptibility of antibiotic-treated mice ascribed to diminished expression of interleukin-22
title_short Rotavirus susceptibility of antibiotic-treated mice ascribed to diminished expression of interleukin-22
title_sort rotavirus susceptibility of antibiotic-treated mice ascribed to diminished expression of interleukin-22
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8360596/
https://www.ncbi.nlm.nih.gov/pubmed/34383769
http://dx.doi.org/10.1371/journal.pone.0247738
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