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Type I interferons and microbial metabolites of tryptophan modulate astrocyte activity and CNS inflammation via the aryl hydrocarbon receptor

Astrocytes play important roles in the central nervous system (CNS) during health and disease. Through genome-wide analyses we detected a transcriptional response to type I interferons (IFN-I) in astrocytes during experimental CNS autoimmunity and also in CNS lesions from multiple sclerosis (MS) pat...

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Autores principales: Rothhammer, Veit, Mascanfroni, Ivan D., Bunse, Lukas, Takenaka, Maisa C., Kenison, Jessica E., Mayo, Lior, Chao, Chun-Cheih, Patel, Bonny, Yan, Raymond, Blain, Manon, Alvarez, Jorge I., Kébir, Hania, Anandasabapathy, Niroshana, Izquierdo, Guillermo, Jung, Steffen, Obholzer, Nikolaus, Pochet, Nathalie, Clish, Clary B., Prinz, Marco, Prat, Alexandre, Antel, Jack, Quintana, Francisco J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4899206/
https://www.ncbi.nlm.nih.gov/pubmed/27158906
http://dx.doi.org/10.1038/nm.4106
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author Rothhammer, Veit
Mascanfroni, Ivan D.
Bunse, Lukas
Takenaka, Maisa C.
Kenison, Jessica E.
Mayo, Lior
Chao, Chun-Cheih
Patel, Bonny
Yan, Raymond
Blain, Manon
Alvarez, Jorge I.
Kébir, Hania
Anandasabapathy, Niroshana
Izquierdo, Guillermo
Jung, Steffen
Obholzer, Nikolaus
Pochet, Nathalie
Clish, Clary B.
Prinz, Marco
Prat, Alexandre
Antel, Jack
Quintana, Francisco J.
author_facet Rothhammer, Veit
Mascanfroni, Ivan D.
Bunse, Lukas
Takenaka, Maisa C.
Kenison, Jessica E.
Mayo, Lior
Chao, Chun-Cheih
Patel, Bonny
Yan, Raymond
Blain, Manon
Alvarez, Jorge I.
Kébir, Hania
Anandasabapathy, Niroshana
Izquierdo, Guillermo
Jung, Steffen
Obholzer, Nikolaus
Pochet, Nathalie
Clish, Clary B.
Prinz, Marco
Prat, Alexandre
Antel, Jack
Quintana, Francisco J.
author_sort Rothhammer, Veit
collection PubMed
description Astrocytes play important roles in the central nervous system (CNS) during health and disease. Through genome-wide analyses we detected a transcriptional response to type I interferons (IFN-I) in astrocytes during experimental CNS autoimmunity and also in CNS lesions from multiple sclerosis (MS) patients. IFN-I signaling in astrocytes reduces inflammation and experimental autoimmune encephalomyelitis (EAE) disease scores via the ligand-activated transcription factor aryl hydrocarbon receptor (AhR) and suppressor of cytokine signaling 2 (SOCS2). The anti-inflammatory effects of nasally administered IFN-β are partly mediated by AhR. Dietary tryptophan is metabolized by the gut microbiota into AhR agonists that act on astrocytes to limit CNS inflammation. EAE scores were increased following ampicillin treatment during the recovery phase, and CNS inflammation was reduced in antibiotic-treated mice by supplementation with the tryptophan metabolites indole, indoxyl-3-sulfate (I3S), indole-3-propionic acid (IPA) and indole-3-aldehyde (IAld), or the bacterial enzyme tryptophanase. In individuals with MS, the circulating levels of AhR agonists were decreased. These findings suggest that IFN-I produced in the CNS act in combination with metabolites derived from dietary tryptophan by the gut flora to activate AhR signaling in astrocytes and suppress CNS inflammation.
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spelling pubmed-48992062016-11-09 Type I interferons and microbial metabolites of tryptophan modulate astrocyte activity and CNS inflammation via the aryl hydrocarbon receptor Rothhammer, Veit Mascanfroni, Ivan D. Bunse, Lukas Takenaka, Maisa C. Kenison, Jessica E. Mayo, Lior Chao, Chun-Cheih Patel, Bonny Yan, Raymond Blain, Manon Alvarez, Jorge I. Kébir, Hania Anandasabapathy, Niroshana Izquierdo, Guillermo Jung, Steffen Obholzer, Nikolaus Pochet, Nathalie Clish, Clary B. Prinz, Marco Prat, Alexandre Antel, Jack Quintana, Francisco J. Nat Med Article Astrocytes play important roles in the central nervous system (CNS) during health and disease. Through genome-wide analyses we detected a transcriptional response to type I interferons (IFN-I) in astrocytes during experimental CNS autoimmunity and also in CNS lesions from multiple sclerosis (MS) patients. IFN-I signaling in astrocytes reduces inflammation and experimental autoimmune encephalomyelitis (EAE) disease scores via the ligand-activated transcription factor aryl hydrocarbon receptor (AhR) and suppressor of cytokine signaling 2 (SOCS2). The anti-inflammatory effects of nasally administered IFN-β are partly mediated by AhR. Dietary tryptophan is metabolized by the gut microbiota into AhR agonists that act on astrocytes to limit CNS inflammation. EAE scores were increased following ampicillin treatment during the recovery phase, and CNS inflammation was reduced in antibiotic-treated mice by supplementation with the tryptophan metabolites indole, indoxyl-3-sulfate (I3S), indole-3-propionic acid (IPA) and indole-3-aldehyde (IAld), or the bacterial enzyme tryptophanase. In individuals with MS, the circulating levels of AhR agonists were decreased. These findings suggest that IFN-I produced in the CNS act in combination with metabolites derived from dietary tryptophan by the gut flora to activate AhR signaling in astrocytes and suppress CNS inflammation. 2016-05-09 2016-06 /pmc/articles/PMC4899206/ /pubmed/27158906 http://dx.doi.org/10.1038/nm.4106 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Rothhammer, Veit
Mascanfroni, Ivan D.
Bunse, Lukas
Takenaka, Maisa C.
Kenison, Jessica E.
Mayo, Lior
Chao, Chun-Cheih
Patel, Bonny
Yan, Raymond
Blain, Manon
Alvarez, Jorge I.
Kébir, Hania
Anandasabapathy, Niroshana
Izquierdo, Guillermo
Jung, Steffen
Obholzer, Nikolaus
Pochet, Nathalie
Clish, Clary B.
Prinz, Marco
Prat, Alexandre
Antel, Jack
Quintana, Francisco J.
Type I interferons and microbial metabolites of tryptophan modulate astrocyte activity and CNS inflammation via the aryl hydrocarbon receptor
title Type I interferons and microbial metabolites of tryptophan modulate astrocyte activity and CNS inflammation via the aryl hydrocarbon receptor
title_full Type I interferons and microbial metabolites of tryptophan modulate astrocyte activity and CNS inflammation via the aryl hydrocarbon receptor
title_fullStr Type I interferons and microbial metabolites of tryptophan modulate astrocyte activity and CNS inflammation via the aryl hydrocarbon receptor
title_full_unstemmed Type I interferons and microbial metabolites of tryptophan modulate astrocyte activity and CNS inflammation via the aryl hydrocarbon receptor
title_short Type I interferons and microbial metabolites of tryptophan modulate astrocyte activity and CNS inflammation via the aryl hydrocarbon receptor
title_sort type i interferons and microbial metabolites of tryptophan modulate astrocyte activity and cns inflammation via the aryl hydrocarbon receptor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4899206/
https://www.ncbi.nlm.nih.gov/pubmed/27158906
http://dx.doi.org/10.1038/nm.4106
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