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Foxo transcription factors control regulatory T cell development and function.


ABSTRACT: Foxo transcription factors integrate extrinsic signals to regulate cell division, differentiation and survival, and specific functions of lymphoid and myeloid cells. Here, we showed the absence of Foxo1 severely curtailed the development of Foxp3(+) regulatory T (Treg) cells and those that developed were nonfunctional in vivo. The loss of function included diminished CTLA-4 receptor expression as the Ctla4 gene was a direct target of Foxo1. T cell-specific loss of Foxo1 resulted in exocrine pancreatitis, hind limb paralysis, multiorgan lymphocyte infiltration, anti-nuclear antibodies and expanded germinal centers. Foxo-mediated control over Treg cell specification was further revealed by the inability of TGF-? cytokine to suppress T-bet transcription factor in the absence of Foxo1, resulting in IFN-? secretion. In addition, the absence of Foxo3 exacerbated the effects of the loss of Foxo1. Thus, Foxo transcription factors guide the contingencies of T cell differentiation and the specific functions of effector cell populations.

SUBMITTER: Kerdiles YM 

PROVIDER: S-EPMC3034255 | biostudies-literature | 2010 Dec

REPOSITORIES: biostudies-literature

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Foxo transcription factors control regulatory T cell development and function.

Kerdiles Yann M YM   Stone Erica L EL   Beisner Daniel R DR   McGargill Maureen A MA   Ch'en Irene L IL   Stockmann Christian C   Katayama Carol D CD   Hedrick Stephen M SM  

Immunity 20101201 6


Foxo transcription factors integrate extrinsic signals to regulate cell division, differentiation and survival, and specific functions of lymphoid and myeloid cells. Here, we showed the absence of Foxo1 severely curtailed the development of Foxp3(+) regulatory T (Treg) cells and those that developed were nonfunctional in vivo. The loss of function included diminished CTLA-4 receptor expression as the Ctla4 gene was a direct target of Foxo1. T cell-specific loss of Foxo1 resulted in exocrine panc  ...[more]

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