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NOD2 Influences Trajectories of Intestinal Microbiota Recovery After Antibiotic Perturbation

BACKGROUND & AIMS: Loss-of-function variants in nucleotide-binding oligomerization domain-containing protein 2 (NOD2) impair the recognition of the bacterial cell wall component muramyl-dipeptide and are associated with an increased risk for developing Crohn’s disease. Likewise, exposure to anti...

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Autores principales: Moltzau Anderson, Jacqueline, Lipinski, Simone, Sommer, Felix, Pan, Wei-Hung, Boulard, Olivier, Rehman, Ateequr, Falk-Paulsen, Maren, Stengel, Stephanie T., Aden, Konrad, Häsler, Robert, Bharti, Richa, Künzel, Sven, Baines, John F., Chamaillard, Mathias, Rosenstiel, Philip
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7327897/
https://www.ncbi.nlm.nih.gov/pubmed/32289499
http://dx.doi.org/10.1016/j.jcmgh.2020.03.008
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author Moltzau Anderson, Jacqueline
Lipinski, Simone
Sommer, Felix
Pan, Wei-Hung
Boulard, Olivier
Rehman, Ateequr
Falk-Paulsen, Maren
Stengel, Stephanie T.
Aden, Konrad
Häsler, Robert
Bharti, Richa
Künzel, Sven
Baines, John F.
Chamaillard, Mathias
Rosenstiel, Philip
author_facet Moltzau Anderson, Jacqueline
Lipinski, Simone
Sommer, Felix
Pan, Wei-Hung
Boulard, Olivier
Rehman, Ateequr
Falk-Paulsen, Maren
Stengel, Stephanie T.
Aden, Konrad
Häsler, Robert
Bharti, Richa
Künzel, Sven
Baines, John F.
Chamaillard, Mathias
Rosenstiel, Philip
author_sort Moltzau Anderson, Jacqueline
collection PubMed
description BACKGROUND & AIMS: Loss-of-function variants in nucleotide-binding oligomerization domain-containing protein 2 (NOD2) impair the recognition of the bacterial cell wall component muramyl-dipeptide and are associated with an increased risk for developing Crohn’s disease. Likewise, exposure to antibiotics increases the individual risk for developing inflammatory bowel disease. Here, we studied the long-term impact of NOD2 on the ability of the gut bacterial and fungal microbiota to recover after antibiotic treatment. METHODS: Two cohorts of 20-week-old and 52-week-old wild-type (WT) C57BL/6J and NOD2 knockout (Nod2-KO) mice were treated with broad-spectrum antibiotics and fecal samples were collected to investigate temporal dynamics of the intestinal microbiota (bacteria and fungi) using 16S ribosomal RNA and internal transcribed spacer 1 sequencing. In addition, 2 sets of germ-free WT mice were colonized with either WT or Nod2-KO after antibiotic donor microbiota and the severity of intestinal inflammation was monitored in the colonized mice. RESULTS: Antibiotic exposure caused long-term shifts in the bacterial and fungal community composition. Genetic ablation of NOD2 was associated with delayed body weight gain after antibiotic treatment and an impaired recovery of the bacterial gut microbiota. Transfer of the postantibiotic fecal microbiota of Nod2-KO mice induced an intestinal inflammatory response in the colons of germ-free recipient mice compared with respective microbiota from WT controls based on histopathology and gene expression analyses. CONCLUSIONS: Our data show that the bacterial sensor NOD2 contributes to intestinal microbial community composition after antibiotic treatment and may add to the explanation of how defects in the NOD2 signaling pathway are involved in the etiology of Crohn’s disease.
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spelling pubmed-73278972020-07-06 NOD2 Influences Trajectories of Intestinal Microbiota Recovery After Antibiotic Perturbation Moltzau Anderson, Jacqueline Lipinski, Simone Sommer, Felix Pan, Wei-Hung Boulard, Olivier Rehman, Ateequr Falk-Paulsen, Maren Stengel, Stephanie T. Aden, Konrad Häsler, Robert Bharti, Richa Künzel, Sven Baines, John F. Chamaillard, Mathias Rosenstiel, Philip Cell Mol Gastroenterol Hepatol Original Research BACKGROUND & AIMS: Loss-of-function variants in nucleotide-binding oligomerization domain-containing protein 2 (NOD2) impair the recognition of the bacterial cell wall component muramyl-dipeptide and are associated with an increased risk for developing Crohn’s disease. Likewise, exposure to antibiotics increases the individual risk for developing inflammatory bowel disease. Here, we studied the long-term impact of NOD2 on the ability of the gut bacterial and fungal microbiota to recover after antibiotic treatment. METHODS: Two cohorts of 20-week-old and 52-week-old wild-type (WT) C57BL/6J and NOD2 knockout (Nod2-KO) mice were treated with broad-spectrum antibiotics and fecal samples were collected to investigate temporal dynamics of the intestinal microbiota (bacteria and fungi) using 16S ribosomal RNA and internal transcribed spacer 1 sequencing. In addition, 2 sets of germ-free WT mice were colonized with either WT or Nod2-KO after antibiotic donor microbiota and the severity of intestinal inflammation was monitored in the colonized mice. RESULTS: Antibiotic exposure caused long-term shifts in the bacterial and fungal community composition. Genetic ablation of NOD2 was associated with delayed body weight gain after antibiotic treatment and an impaired recovery of the bacterial gut microbiota. Transfer of the postantibiotic fecal microbiota of Nod2-KO mice induced an intestinal inflammatory response in the colons of germ-free recipient mice compared with respective microbiota from WT controls based on histopathology and gene expression analyses. CONCLUSIONS: Our data show that the bacterial sensor NOD2 contributes to intestinal microbial community composition after antibiotic treatment and may add to the explanation of how defects in the NOD2 signaling pathway are involved in the etiology of Crohn’s disease. Elsevier 2020-04-11 /pmc/articles/PMC7327897/ /pubmed/32289499 http://dx.doi.org/10.1016/j.jcmgh.2020.03.008 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Moltzau Anderson, Jacqueline
Lipinski, Simone
Sommer, Felix
Pan, Wei-Hung
Boulard, Olivier
Rehman, Ateequr
Falk-Paulsen, Maren
Stengel, Stephanie T.
Aden, Konrad
Häsler, Robert
Bharti, Richa
Künzel, Sven
Baines, John F.
Chamaillard, Mathias
Rosenstiel, Philip
NOD2 Influences Trajectories of Intestinal Microbiota Recovery After Antibiotic Perturbation
title NOD2 Influences Trajectories of Intestinal Microbiota Recovery After Antibiotic Perturbation
title_full NOD2 Influences Trajectories of Intestinal Microbiota Recovery After Antibiotic Perturbation
title_fullStr NOD2 Influences Trajectories of Intestinal Microbiota Recovery After Antibiotic Perturbation
title_full_unstemmed NOD2 Influences Trajectories of Intestinal Microbiota Recovery After Antibiotic Perturbation
title_short NOD2 Influences Trajectories of Intestinal Microbiota Recovery After Antibiotic Perturbation
title_sort nod2 influences trajectories of intestinal microbiota recovery after antibiotic perturbation
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7327897/
https://www.ncbi.nlm.nih.gov/pubmed/32289499
http://dx.doi.org/10.1016/j.jcmgh.2020.03.008
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