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Tbet or Continued RORγt Expression Is Not Required for Th17-Associated Immunopathology

The discovery of Th17 cell plasticity, in which CD4(+) IL-17–producing Th17 cells give rise to IL-17/IFN-γ double-producing cells and Th1-like IFNγ(+) ex-Th17 lymphocytes, has raised questions regarding which of these cell types contribute to immunopathology during inflammatory diseases. In this stu...

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Autores principales: Brucklacher-Waldert, Verena, Ferreira, Cristina, Innocentin, Silvia, Kamdar, Shraddha, Withers, David R., Kullberg, Marika C., Veldhoen, Marc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891569/
https://www.ncbi.nlm.nih.gov/pubmed/27183623
http://dx.doi.org/10.4049/jimmunol.1600137
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author Brucklacher-Waldert, Verena
Ferreira, Cristina
Innocentin, Silvia
Kamdar, Shraddha
Withers, David R.
Kullberg, Marika C.
Veldhoen, Marc
author_facet Brucklacher-Waldert, Verena
Ferreira, Cristina
Innocentin, Silvia
Kamdar, Shraddha
Withers, David R.
Kullberg, Marika C.
Veldhoen, Marc
author_sort Brucklacher-Waldert, Verena
collection PubMed
description The discovery of Th17 cell plasticity, in which CD4(+) IL-17–producing Th17 cells give rise to IL-17/IFN-γ double-producing cells and Th1-like IFNγ(+) ex-Th17 lymphocytes, has raised questions regarding which of these cell types contribute to immunopathology during inflammatory diseases. In this study, we show using Helicobacter hepaticus-induced intestinal inflammation that IL-17A(Cre)– or Rag1(Cre)-mediated deletion of Tbx21 has no effect on the generation of IL-17/IFN-γ double-producing cells, but leads to a marked absence of Th1-like IFNγ(+) ex-Th17 cells. Despite the lack of Th1-like ex-Th17 cells, the degree of H. hepaticus-triggered intestinal inflammation in mice in which Tbx21 was excised in IL-17–producing or Rag1-expressing cells is indistinguishable from that observed in control mice. In stark contrast, using experimental autoimmune encephalomyelitis, we show that IL-17A(Cre)–mediated deletion of Tbx21 prevents the conversion of Th17 cells to IL-17A/IFN-γ double-producing cells as well as Th1-like IFN-γ(+) ex-Th17 cells. However, IL-17A(Cre)–mediated deletion of Tbx21 has only limited effects on disease course in this model and is not compensated by Ag-specific Th1 cells. IL-17A(Cre)–mediated deletion of Rorc reveals that RORγt is essential for the maintenance of the Th17 cell lineage, but not immunopathology during experimental autoimmune encephalomyelitis. These results show that neither the single Th17 subset, nor its progeny, is solely responsible for immunopathology or autoimmunity.
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spelling pubmed-48915692016-06-03 Tbet or Continued RORγt Expression Is Not Required for Th17-Associated Immunopathology Brucklacher-Waldert, Verena Ferreira, Cristina Innocentin, Silvia Kamdar, Shraddha Withers, David R. Kullberg, Marika C. Veldhoen, Marc J Immunol Autoimmunity The discovery of Th17 cell plasticity, in which CD4(+) IL-17–producing Th17 cells give rise to IL-17/IFN-γ double-producing cells and Th1-like IFNγ(+) ex-Th17 lymphocytes, has raised questions regarding which of these cell types contribute to immunopathology during inflammatory diseases. In this study, we show using Helicobacter hepaticus-induced intestinal inflammation that IL-17A(Cre)– or Rag1(Cre)-mediated deletion of Tbx21 has no effect on the generation of IL-17/IFN-γ double-producing cells, but leads to a marked absence of Th1-like IFNγ(+) ex-Th17 cells. Despite the lack of Th1-like ex-Th17 cells, the degree of H. hepaticus-triggered intestinal inflammation in mice in which Tbx21 was excised in IL-17–producing or Rag1-expressing cells is indistinguishable from that observed in control mice. In stark contrast, using experimental autoimmune encephalomyelitis, we show that IL-17A(Cre)–mediated deletion of Tbx21 prevents the conversion of Th17 cells to IL-17A/IFN-γ double-producing cells as well as Th1-like IFN-γ(+) ex-Th17 cells. However, IL-17A(Cre)–mediated deletion of Tbx21 has only limited effects on disease course in this model and is not compensated by Ag-specific Th1 cells. IL-17A(Cre)–mediated deletion of Rorc reveals that RORγt is essential for the maintenance of the Th17 cell lineage, but not immunopathology during experimental autoimmune encephalomyelitis. These results show that neither the single Th17 subset, nor its progeny, is solely responsible for immunopathology or autoimmunity. AAI 2016-06-15 2016-05-11 /pmc/articles/PMC4891569/ /pubmed/27183623 http://dx.doi.org/10.4049/jimmunol.1600137 Text en Copyright © 2016 The Authors This is an open-access article distributed under the terms of the CC-BY 3.0 Unported license.
spellingShingle Autoimmunity
Brucklacher-Waldert, Verena
Ferreira, Cristina
Innocentin, Silvia
Kamdar, Shraddha
Withers, David R.
Kullberg, Marika C.
Veldhoen, Marc
Tbet or Continued RORγt Expression Is Not Required for Th17-Associated Immunopathology
title Tbet or Continued RORγt Expression Is Not Required for Th17-Associated Immunopathology
title_full Tbet or Continued RORγt Expression Is Not Required for Th17-Associated Immunopathology
title_fullStr Tbet or Continued RORγt Expression Is Not Required for Th17-Associated Immunopathology
title_full_unstemmed Tbet or Continued RORγt Expression Is Not Required for Th17-Associated Immunopathology
title_short Tbet or Continued RORγt Expression Is Not Required for Th17-Associated Immunopathology
title_sort tbet or continued rorγt expression is not required for th17-associated immunopathology
topic Autoimmunity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891569/
https://www.ncbi.nlm.nih.gov/pubmed/27183623
http://dx.doi.org/10.4049/jimmunol.1600137
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