Foxp4 is dispensable for T cell development, but required for robust recall responses.

Transcription factors regulate T cell fates at every stage of development and differentiation. Members of the Foxp family of forkhead transcription factors are essential for normal T lineage development; Foxp3 is required for T regulatory cell generation and function, and Foxp1 is necessary for gene...

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Main Authors: Karla R Wiehagen, Evann Corbo-Rodgers, Shanru Li, Elizabeth S Staub, Christopher A Hunter, Edward E Morrisey, Jonathan S Maltzman
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3418275?pdf=render
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spelling doaj-8f68866351aa47f89c4445fa7099f94d2020-11-25T01:17:55ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0178e4227310.1371/journal.pone.0042273Foxp4 is dispensable for T cell development, but required for robust recall responses.Karla R WiehagenEvann Corbo-RodgersShanru LiElizabeth S StaubChristopher A HunterEdward E MorriseyJonathan S MaltzmanTranscription factors regulate T cell fates at every stage of development and differentiation. Members of the Foxp family of forkhead transcription factors are essential for normal T lineage development; Foxp3 is required for T regulatory cell generation and function, and Foxp1 is necessary for generation and maintenance of naïve T cells. Foxp4, an additional member of the Foxp family, is highly homologous to Foxp1 and has been shown to dimerize with other Foxp proteins. We report the initial characterization of Foxp4 in T lymphocytes. Foxp4 is expressed in both thymocytes and peripheral CD4(+) and CD8(+) T cells. We used a CD4Cre mediated approach to evaluate the cell autonomous role for Foxp4 in murine T lymphocytes. T cell development, peripheral cellularity and cell surface phenotype are normal in the absence of Foxp4. Furthermore, Foxp3(+) T regulatory cells develop normally in Foxp4 deficient animals and naïve Foxp4 deficient CD4 T cells can differentiate to inducible T regulatory cells in vitro. In wild-type T cells, expression of Foxp4 increases following activation, but deletion of Foxp4 does not affect T cell proliferative responses or in vitro effector T cell differentiation. In vivo, despite effective control of Toxoplasma gondii and acute lymphocytic choriomeningitis virus infections, effector cytokine production during antigen specific recall responses are reduced in the absence of Foxp4. We conclude that Foxp4 is dispensable for T cell development, but necessary for normal T cell cytokine recall responses to antigen following pathogenic infection.http://europepmc.org/articles/PMC3418275?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Karla R Wiehagen
Evann Corbo-Rodgers
Shanru Li
Elizabeth S Staub
Christopher A Hunter
Edward E Morrisey
Jonathan S Maltzman
spellingShingle Karla R Wiehagen
Evann Corbo-Rodgers
Shanru Li
Elizabeth S Staub
Christopher A Hunter
Edward E Morrisey
Jonathan S Maltzman
Foxp4 is dispensable for T cell development, but required for robust recall responses.
PLoS ONE
author_facet Karla R Wiehagen
Evann Corbo-Rodgers
Shanru Li
Elizabeth S Staub
Christopher A Hunter
Edward E Morrisey
Jonathan S Maltzman
author_sort Karla R Wiehagen
title Foxp4 is dispensable for T cell development, but required for robust recall responses.
title_short Foxp4 is dispensable for T cell development, but required for robust recall responses.
title_full Foxp4 is dispensable for T cell development, but required for robust recall responses.
title_fullStr Foxp4 is dispensable for T cell development, but required for robust recall responses.
title_full_unstemmed Foxp4 is dispensable for T cell development, but required for robust recall responses.
title_sort foxp4 is dispensable for t cell development, but required for robust recall responses.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Transcription factors regulate T cell fates at every stage of development and differentiation. Members of the Foxp family of forkhead transcription factors are essential for normal T lineage development; Foxp3 is required for T regulatory cell generation and function, and Foxp1 is necessary for generation and maintenance of naïve T cells. Foxp4, an additional member of the Foxp family, is highly homologous to Foxp1 and has been shown to dimerize with other Foxp proteins. We report the initial characterization of Foxp4 in T lymphocytes. Foxp4 is expressed in both thymocytes and peripheral CD4(+) and CD8(+) T cells. We used a CD4Cre mediated approach to evaluate the cell autonomous role for Foxp4 in murine T lymphocytes. T cell development, peripheral cellularity and cell surface phenotype are normal in the absence of Foxp4. Furthermore, Foxp3(+) T regulatory cells develop normally in Foxp4 deficient animals and naïve Foxp4 deficient CD4 T cells can differentiate to inducible T regulatory cells in vitro. In wild-type T cells, expression of Foxp4 increases following activation, but deletion of Foxp4 does not affect T cell proliferative responses or in vitro effector T cell differentiation. In vivo, despite effective control of Toxoplasma gondii and acute lymphocytic choriomeningitis virus infections, effector cytokine production during antigen specific recall responses are reduced in the absence of Foxp4. We conclude that Foxp4 is dispensable for T cell development, but necessary for normal T cell cytokine recall responses to antigen following pathogenic infection.
url http://europepmc.org/articles/PMC3418275?pdf=render
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