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IL-27 Receptor Signalling Restricts the Formation of Pathogenic, Terminally Differentiated Th1 Cells during Malaria Infection by Repressing IL-12 Dependent Signals

The IL-27R, WSX-1, is required to limit IFN-γ production by effector CD4(+) T cells in a number of different inflammatory conditions but the molecular basis of WSX-1-mediated regulation of Th1 responses in vivo during infection has not been investigated in detail. In this study we demonstrate that W...

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Autores principales: Villegas-Mendez, Ana, de Souza, J. Brian, Lavelle, Seen-Wai, Gwyer Findlay, Emily, Shaw, Tovah N., van Rooijen, Nico, Saris, Christiaan J., Hunter, Christopher A., Riley, Eleanor M., Couper, Kevin N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3623720/
https://www.ncbi.nlm.nih.gov/pubmed/23593003
http://dx.doi.org/10.1371/journal.ppat.1003293
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author Villegas-Mendez, Ana
de Souza, J. Brian
Lavelle, Seen-Wai
Gwyer Findlay, Emily
Shaw, Tovah N.
van Rooijen, Nico
Saris, Christiaan J.
Hunter, Christopher A.
Riley, Eleanor M.
Couper, Kevin N.
author_facet Villegas-Mendez, Ana
de Souza, J. Brian
Lavelle, Seen-Wai
Gwyer Findlay, Emily
Shaw, Tovah N.
van Rooijen, Nico
Saris, Christiaan J.
Hunter, Christopher A.
Riley, Eleanor M.
Couper, Kevin N.
author_sort Villegas-Mendez, Ana
collection PubMed
description The IL-27R, WSX-1, is required to limit IFN-γ production by effector CD4(+) T cells in a number of different inflammatory conditions but the molecular basis of WSX-1-mediated regulation of Th1 responses in vivo during infection has not been investigated in detail. In this study we demonstrate that WSX-1 signalling suppresses the development of pathogenic, terminally differentiated (KLRG-1(+)) Th1 cells during malaria infection and establishes a restrictive threshold to constrain the emergent Th1 response. Importantly, we show that WSX-1 regulates cell-intrinsic responsiveness to IL-12 and IL-2, but the fate of the effector CD4(+) T cell pool during malaria infection is controlled primarily through IL-12 dependent signals. Finally, we show that WSX-1 regulates Th1 cell terminal differentiation during malaria infection through IL-10 and Foxp3 independent mechanisms; the kinetics and magnitude of the Th1 response, and the degree of Th1 cell terminal differentiation, were comparable in WT, IL-10R1(−/−) and IL-10(−/−) mice and the numbers and phenotype of Foxp3(+) cells were largely unaltered in WSX-1(−/−) mice during infection. As expected, depletion of Foxp3(+) cells did not enhance Th1 cell polarisation or terminal differentiation during malaria infection. Our results significantly expand our understanding of how IL-27 regulates Th1 responses in vivo during inflammatory conditions and establishes WSX-1 as a critical and non-redundant regulator of the emergent Th1 effector response during malaria infection.
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spelling pubmed-36237202013-04-16 IL-27 Receptor Signalling Restricts the Formation of Pathogenic, Terminally Differentiated Th1 Cells during Malaria Infection by Repressing IL-12 Dependent Signals Villegas-Mendez, Ana de Souza, J. Brian Lavelle, Seen-Wai Gwyer Findlay, Emily Shaw, Tovah N. van Rooijen, Nico Saris, Christiaan J. Hunter, Christopher A. Riley, Eleanor M. Couper, Kevin N. PLoS Pathog Research Article The IL-27R, WSX-1, is required to limit IFN-γ production by effector CD4(+) T cells in a number of different inflammatory conditions but the molecular basis of WSX-1-mediated regulation of Th1 responses in vivo during infection has not been investigated in detail. In this study we demonstrate that WSX-1 signalling suppresses the development of pathogenic, terminally differentiated (KLRG-1(+)) Th1 cells during malaria infection and establishes a restrictive threshold to constrain the emergent Th1 response. Importantly, we show that WSX-1 regulates cell-intrinsic responsiveness to IL-12 and IL-2, but the fate of the effector CD4(+) T cell pool during malaria infection is controlled primarily through IL-12 dependent signals. Finally, we show that WSX-1 regulates Th1 cell terminal differentiation during malaria infection through IL-10 and Foxp3 independent mechanisms; the kinetics and magnitude of the Th1 response, and the degree of Th1 cell terminal differentiation, were comparable in WT, IL-10R1(−/−) and IL-10(−/−) mice and the numbers and phenotype of Foxp3(+) cells were largely unaltered in WSX-1(−/−) mice during infection. As expected, depletion of Foxp3(+) cells did not enhance Th1 cell polarisation or terminal differentiation during malaria infection. Our results significantly expand our understanding of how IL-27 regulates Th1 responses in vivo during inflammatory conditions and establishes WSX-1 as a critical and non-redundant regulator of the emergent Th1 effector response during malaria infection. Public Library of Science 2013-04-11 /pmc/articles/PMC3623720/ /pubmed/23593003 http://dx.doi.org/10.1371/journal.ppat.1003293 Text en © 2013 Villegas-Mendez et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Villegas-Mendez, Ana
de Souza, J. Brian
Lavelle, Seen-Wai
Gwyer Findlay, Emily
Shaw, Tovah N.
van Rooijen, Nico
Saris, Christiaan J.
Hunter, Christopher A.
Riley, Eleanor M.
Couper, Kevin N.
IL-27 Receptor Signalling Restricts the Formation of Pathogenic, Terminally Differentiated Th1 Cells during Malaria Infection by Repressing IL-12 Dependent Signals
title IL-27 Receptor Signalling Restricts the Formation of Pathogenic, Terminally Differentiated Th1 Cells during Malaria Infection by Repressing IL-12 Dependent Signals
title_full IL-27 Receptor Signalling Restricts the Formation of Pathogenic, Terminally Differentiated Th1 Cells during Malaria Infection by Repressing IL-12 Dependent Signals
title_fullStr IL-27 Receptor Signalling Restricts the Formation of Pathogenic, Terminally Differentiated Th1 Cells during Malaria Infection by Repressing IL-12 Dependent Signals
title_full_unstemmed IL-27 Receptor Signalling Restricts the Formation of Pathogenic, Terminally Differentiated Th1 Cells during Malaria Infection by Repressing IL-12 Dependent Signals
title_short IL-27 Receptor Signalling Restricts the Formation of Pathogenic, Terminally Differentiated Th1 Cells during Malaria Infection by Repressing IL-12 Dependent Signals
title_sort il-27 receptor signalling restricts the formation of pathogenic, terminally differentiated th1 cells during malaria infection by repressing il-12 dependent signals
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3623720/
https://www.ncbi.nlm.nih.gov/pubmed/23593003
http://dx.doi.org/10.1371/journal.ppat.1003293
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