Cargando…

The Tyrosine Kinase Tec Regulates Effector Th17 Differentiation, Pathogenicity, and Plasticity in T-Cell-Driven Intestinal Inflammation

T helper (Th) 17 cells are not only key in controlling infections mediated by extracellular bacteria and fungi but are also triggering autoimmune responses. Th17 cells comprise heterogeneous subsets, some with pathogenic functions. They can cease to secrete their hallmark cytokine IL-17A and even co...

Descripción completa

Detalles Bibliográficos
Autores principales: Sandner, Lisa, Alteneder, Marlis, Zhu, Ci, Hladik, Anastasiya, Högler, Sandra, Rica, Ramona, Van Greuningen, Lars W., Sharif, Omar, Sakaguchi, Shinya, Knapp, Sylvia, Kenner, Lukas, Trauner, Michael, Ellmeier, Wilfried, Boucheron, Nicole
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8728872/
https://www.ncbi.nlm.nih.gov/pubmed/35003062
http://dx.doi.org/10.3389/fimmu.2021.750466
_version_ 1784626821715722240
author Sandner, Lisa
Alteneder, Marlis
Zhu, Ci
Hladik, Anastasiya
Högler, Sandra
Rica, Ramona
Van Greuningen, Lars W.
Sharif, Omar
Sakaguchi, Shinya
Knapp, Sylvia
Kenner, Lukas
Trauner, Michael
Ellmeier, Wilfried
Boucheron, Nicole
author_facet Sandner, Lisa
Alteneder, Marlis
Zhu, Ci
Hladik, Anastasiya
Högler, Sandra
Rica, Ramona
Van Greuningen, Lars W.
Sharif, Omar
Sakaguchi, Shinya
Knapp, Sylvia
Kenner, Lukas
Trauner, Michael
Ellmeier, Wilfried
Boucheron, Nicole
author_sort Sandner, Lisa
collection PubMed
description T helper (Th) 17 cells are not only key in controlling infections mediated by extracellular bacteria and fungi but are also triggering autoimmune responses. Th17 cells comprise heterogeneous subsets, some with pathogenic functions. They can cease to secrete their hallmark cytokine IL-17A and even convert to other T helper lineages, a process known as transdifferentiation relying on plasticity. Both pathogenicity and plasticity are tightly linked to IL-23 signaling. Here, we show that the protein tyrosine kinase Tec is highly induced in Th17 cells. Th17 differentiation was enhanced at low interleukin-6 (IL-6) concentrations in absence of Tec, which correlates with increased STAT3 phosphorylation and higher Il23r expression. Therefore, we uncovered a function for Tec in the IL-6 sensing via STAT3 by CD4(+) T cells, defining Tec as a fine-tuning negative regulator of Th17 differentiation. Subsequently, by using the IL-17A fate mapping mouse combined with in vivo adoptive transfer models, we demonstrated that Tec not only restrained effector Th17 differentiation but also pathogenicity and plasticity in a T-cell intrinsic manner. Our data further suggest that Tec regulates inflammatory Th17-driven immune responses directly impacting disease severity in a T-cell-driven colitis model. Notably, consistent with the in vitro findings, elevated levels of the IL-23 receptor (IL-23R) were observed on intestinal pre- and postconversion Th17 cells isolated from diseased Tec(−/−) mice subjected to adoptive transfer colitis, highlighting a fundamental role of Tec in restraining IL-23R expression, likely via the IL-6-STAT3 signaling axis. Taken together, these findings identify Tec as a negative regulator of Th17 differentiation, pathogenicity, and plasticity, contributing to the mechanisms which help T cells to orchestrate optimal immune protection and to restrain immunopathology.
format Online
Article
Text
id pubmed-8728872
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-87288722022-01-06 The Tyrosine Kinase Tec Regulates Effector Th17 Differentiation, Pathogenicity, and Plasticity in T-Cell-Driven Intestinal Inflammation Sandner, Lisa Alteneder, Marlis Zhu, Ci Hladik, Anastasiya Högler, Sandra Rica, Ramona Van Greuningen, Lars W. Sharif, Omar Sakaguchi, Shinya Knapp, Sylvia Kenner, Lukas Trauner, Michael Ellmeier, Wilfried Boucheron, Nicole Front Immunol Immunology T helper (Th) 17 cells are not only key in controlling infections mediated by extracellular bacteria and fungi but are also triggering autoimmune responses. Th17 cells comprise heterogeneous subsets, some with pathogenic functions. They can cease to secrete their hallmark cytokine IL-17A and even convert to other T helper lineages, a process known as transdifferentiation relying on plasticity. Both pathogenicity and plasticity are tightly linked to IL-23 signaling. Here, we show that the protein tyrosine kinase Tec is highly induced in Th17 cells. Th17 differentiation was enhanced at low interleukin-6 (IL-6) concentrations in absence of Tec, which correlates with increased STAT3 phosphorylation and higher Il23r expression. Therefore, we uncovered a function for Tec in the IL-6 sensing via STAT3 by CD4(+) T cells, defining Tec as a fine-tuning negative regulator of Th17 differentiation. Subsequently, by using the IL-17A fate mapping mouse combined with in vivo adoptive transfer models, we demonstrated that Tec not only restrained effector Th17 differentiation but also pathogenicity and plasticity in a T-cell intrinsic manner. Our data further suggest that Tec regulates inflammatory Th17-driven immune responses directly impacting disease severity in a T-cell-driven colitis model. Notably, consistent with the in vitro findings, elevated levels of the IL-23 receptor (IL-23R) were observed on intestinal pre- and postconversion Th17 cells isolated from diseased Tec(−/−) mice subjected to adoptive transfer colitis, highlighting a fundamental role of Tec in restraining IL-23R expression, likely via the IL-6-STAT3 signaling axis. Taken together, these findings identify Tec as a negative regulator of Th17 differentiation, pathogenicity, and plasticity, contributing to the mechanisms which help T cells to orchestrate optimal immune protection and to restrain immunopathology. Frontiers Media S.A. 2021-12-21 /pmc/articles/PMC8728872/ /pubmed/35003062 http://dx.doi.org/10.3389/fimmu.2021.750466 Text en Copyright © 2021 Sandner, Alteneder, Zhu, Hladik, Högler, Rica, Van Greuningen, Sharif, Sakaguchi, Knapp, Kenner, Trauner, Ellmeier and Boucheron https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Sandner, Lisa
Alteneder, Marlis
Zhu, Ci
Hladik, Anastasiya
Högler, Sandra
Rica, Ramona
Van Greuningen, Lars W.
Sharif, Omar
Sakaguchi, Shinya
Knapp, Sylvia
Kenner, Lukas
Trauner, Michael
Ellmeier, Wilfried
Boucheron, Nicole
The Tyrosine Kinase Tec Regulates Effector Th17 Differentiation, Pathogenicity, and Plasticity in T-Cell-Driven Intestinal Inflammation
title The Tyrosine Kinase Tec Regulates Effector Th17 Differentiation, Pathogenicity, and Plasticity in T-Cell-Driven Intestinal Inflammation
title_full The Tyrosine Kinase Tec Regulates Effector Th17 Differentiation, Pathogenicity, and Plasticity in T-Cell-Driven Intestinal Inflammation
title_fullStr The Tyrosine Kinase Tec Regulates Effector Th17 Differentiation, Pathogenicity, and Plasticity in T-Cell-Driven Intestinal Inflammation
title_full_unstemmed The Tyrosine Kinase Tec Regulates Effector Th17 Differentiation, Pathogenicity, and Plasticity in T-Cell-Driven Intestinal Inflammation
title_short The Tyrosine Kinase Tec Regulates Effector Th17 Differentiation, Pathogenicity, and Plasticity in T-Cell-Driven Intestinal Inflammation
title_sort tyrosine kinase tec regulates effector th17 differentiation, pathogenicity, and plasticity in t-cell-driven intestinal inflammation
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8728872/
https://www.ncbi.nlm.nih.gov/pubmed/35003062
http://dx.doi.org/10.3389/fimmu.2021.750466
work_keys_str_mv AT sandnerlisa thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT altenedermarlis thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT zhuci thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT hladikanastasiya thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT hoglersandra thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT ricaramona thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT vangreuningenlarsw thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT sharifomar thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT sakaguchishinya thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT knappsylvia thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT kennerlukas thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT traunermichael thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT ellmeierwilfried thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT boucheronnicole thetyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT sandnerlisa tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT altenedermarlis tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT zhuci tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT hladikanastasiya tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT hoglersandra tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT ricaramona tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT vangreuningenlarsw tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT sharifomar tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT sakaguchishinya tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT knappsylvia tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT kennerlukas tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT traunermichael tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT ellmeierwilfried tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation
AT boucheronnicole tyrosinekinasetecregulateseffectorth17differentiationpathogenicityandplasticityintcelldrivenintestinalinflammation