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IL‐23 drives differentiation of peripheral γδ17 T cells from adult bone marrow‐derived precursors

Pro‐inflammatory interleukin (IL)‐17‐producing γδ (γδ17) T cells are thought to develop exclusively in the thymus during fetal/perinatal life, as adult bone marrow precursors fail to generate γδ17 T cells under homeostatic conditions. Here, we employ a model of experimental autoimmune encephalomyeli...

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Autores principales: Papotto, Pedro H, Gonçalves‐Sousa, Natacha, Schmolka, Nina, Iseppon, Andrea, Mensurado, Sofia, Stockinger, Brigitta, Ribot, Julie C, Silva‐Santos, Bruno
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5666615/
https://www.ncbi.nlm.nih.gov/pubmed/28855306
http://dx.doi.org/10.15252/embr.201744200
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author Papotto, Pedro H
Gonçalves‐Sousa, Natacha
Schmolka, Nina
Iseppon, Andrea
Mensurado, Sofia
Stockinger, Brigitta
Ribot, Julie C
Silva‐Santos, Bruno
author_facet Papotto, Pedro H
Gonçalves‐Sousa, Natacha
Schmolka, Nina
Iseppon, Andrea
Mensurado, Sofia
Stockinger, Brigitta
Ribot, Julie C
Silva‐Santos, Bruno
author_sort Papotto, Pedro H
collection PubMed
description Pro‐inflammatory interleukin (IL)‐17‐producing γδ (γδ17) T cells are thought to develop exclusively in the thymus during fetal/perinatal life, as adult bone marrow precursors fail to generate γδ17 T cells under homeostatic conditions. Here, we employ a model of experimental autoimmune encephalomyelitis (EAE) in which hematopoiesis is reset by bone marrow transplantation and demonstrate unequivocally that Vγ4(+) γδ17 T cells can develop de novo in draining lymph nodes in response to innate stimuli. In vitro, γδ T cells from IL‐17 fate‐mapping reporter mice that had never activated the Il17 locus acquire IL‐17 expression upon stimulation with IL‐1β and IL‐23. Furthermore, IL‐23R (but not IL‐1R1) deficiency severely compromises the induction of γδ17 T cells in EAE, demonstrating the key role of IL‐23 in the process. Finally, we show, in a composite model involving transfers of both adult bone marrow and neonatal thymocytes, that induced γδ17 T cells make up a substantial fraction of the total IL‐17‐producing Vγ4(+) T‐cell pool upon inflammation, which attests the relevance of this novel pathway of peripheral γδ17 T‐cell differentiation.
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spelling pubmed-56666152017-11-09 IL‐23 drives differentiation of peripheral γδ17 T cells from adult bone marrow‐derived precursors Papotto, Pedro H Gonçalves‐Sousa, Natacha Schmolka, Nina Iseppon, Andrea Mensurado, Sofia Stockinger, Brigitta Ribot, Julie C Silva‐Santos, Bruno EMBO Rep Scientific Reports Pro‐inflammatory interleukin (IL)‐17‐producing γδ (γδ17) T cells are thought to develop exclusively in the thymus during fetal/perinatal life, as adult bone marrow precursors fail to generate γδ17 T cells under homeostatic conditions. Here, we employ a model of experimental autoimmune encephalomyelitis (EAE) in which hematopoiesis is reset by bone marrow transplantation and demonstrate unequivocally that Vγ4(+) γδ17 T cells can develop de novo in draining lymph nodes in response to innate stimuli. In vitro, γδ T cells from IL‐17 fate‐mapping reporter mice that had never activated the Il17 locus acquire IL‐17 expression upon stimulation with IL‐1β and IL‐23. Furthermore, IL‐23R (but not IL‐1R1) deficiency severely compromises the induction of γδ17 T cells in EAE, demonstrating the key role of IL‐23 in the process. Finally, we show, in a composite model involving transfers of both adult bone marrow and neonatal thymocytes, that induced γδ17 T cells make up a substantial fraction of the total IL‐17‐producing Vγ4(+) T‐cell pool upon inflammation, which attests the relevance of this novel pathway of peripheral γδ17 T‐cell differentiation. John Wiley and Sons Inc. 2017-08-30 2017-11 /pmc/articles/PMC5666615/ /pubmed/28855306 http://dx.doi.org/10.15252/embr.201744200 Text en © 2017 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the Creative Commons Attribution 4.0 (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Scientific Reports
Papotto, Pedro H
Gonçalves‐Sousa, Natacha
Schmolka, Nina
Iseppon, Andrea
Mensurado, Sofia
Stockinger, Brigitta
Ribot, Julie C
Silva‐Santos, Bruno
IL‐23 drives differentiation of peripheral γδ17 T cells from adult bone marrow‐derived precursors
title IL‐23 drives differentiation of peripheral γδ17 T cells from adult bone marrow‐derived precursors
title_full IL‐23 drives differentiation of peripheral γδ17 T cells from adult bone marrow‐derived precursors
title_fullStr IL‐23 drives differentiation of peripheral γδ17 T cells from adult bone marrow‐derived precursors
title_full_unstemmed IL‐23 drives differentiation of peripheral γδ17 T cells from adult bone marrow‐derived precursors
title_short IL‐23 drives differentiation of peripheral γδ17 T cells from adult bone marrow‐derived precursors
title_sort il‐23 drives differentiation of peripheral γδ17 t cells from adult bone marrow‐derived precursors
topic Scientific Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5666615/
https://www.ncbi.nlm.nih.gov/pubmed/28855306
http://dx.doi.org/10.15252/embr.201744200
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