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Stability and function of regulatory T cells expressing the transcription factor T-bet.

Publication ,  Journal Article
Levine, AG; Mendoza, A; Hemmers, S; Moltedo, B; Niec, RE; Schizas, M; Hoyos, BE; Putintseva, EV; Chaudhry, A; Dikiy, S; Fujisawa, S ...
Published in: Nature
June 15, 2017

Adaptive immune responses are tailored to different types of pathogens through differentiation of naive CD4 T cells into functionally distinct subsets of effector T cells (T helper 1 (TH1), TH2, and TH17) defined by expression of the key transcription factors T-bet, GATA3, and RORγt, respectively. Regulatory T (Treg) cells comprise a distinct anti-inflammatory lineage specified by the X-linked transcription factor Foxp3 (refs 2, 3). Paradoxically, some activated Treg cells express the aforementioned effector CD4 T cell transcription factors, which have been suggested to provide Treg cells with enhanced suppressive capacity. Whether expression of these factors in Treg cells-as in effector T cells-is indicative of heterogeneity of functionally discrete and stable differentiation states, or conversely may be readily reversible, is unknown. Here we demonstrate that expression of the TH1-associated transcription factor T-bet in mouse Treg cells, induced at steady state and following infection, gradually becomes highly stable even under non-permissive conditions. Loss of function or elimination of T-bet-expressing Treg cells-but not of T-bet expression in Treg cells-resulted in severe TH1 autoimmunity. Conversely, following depletion of T-bet- Treg cells, the remaining T-bet+ cells specifically inhibited TH1 and CD8 T cell activation consistent with their co-localization with T-bet+ effector T cells. These results suggest that T-bet+ Treg cells have an essential immunosuppressive function and indicate that Treg cell functional heterogeneity is a critical feature of immunological tolerance.

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Published In

Nature

DOI

EISSN

1476-4687

Publication Date

June 15, 2017

Volume

546

Issue

7658

Start / End Page

421 / 425

Location

England

Related Subject Headings

  • Th2 Cells
  • Th17 Cells
  • Th1 Cells
  • T-Lymphocytes, Regulatory
  • T-Box Domain Proteins
  • Mice
  • Male
  • Lymphocyte Activation
  • Immune Tolerance
  • General Science & Technology
 

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Levine, A. G., Mendoza, A., Hemmers, S., Moltedo, B., Niec, R. E., Schizas, M., … Rudensky, A. Y. (2017). Stability and function of regulatory T cells expressing the transcription factor T-bet. Nature, 546(7658), 421–425. https://doi.org/10.1038/nature22360
Levine, Andrew G., Alejandra Mendoza, Saskia Hemmers, Bruno Moltedo, Rachel E. Niec, Michail Schizas, Beatrice E. Hoyos, et al. “Stability and function of regulatory T cells expressing the transcription factor T-bet.Nature 546, no. 7658 (June 15, 2017): 421–25. https://doi.org/10.1038/nature22360.
Levine AG, Mendoza A, Hemmers S, Moltedo B, Niec RE, Schizas M, et al. Stability and function of regulatory T cells expressing the transcription factor T-bet. Nature. 2017 Jun 15;546(7658):421–5.
Levine, Andrew G., et al. “Stability and function of regulatory T cells expressing the transcription factor T-bet.Nature, vol. 546, no. 7658, June 2017, pp. 421–25. Pubmed, doi:10.1038/nature22360.
Levine AG, Mendoza A, Hemmers S, Moltedo B, Niec RE, Schizas M, Hoyos BE, Putintseva EV, Chaudhry A, Dikiy S, Fujisawa S, Chudakov DM, Treuting PM, Rudensky AY. Stability and function of regulatory T cells expressing the transcription factor T-bet. Nature. 2017 Jun 15;546(7658):421–425.
Journal cover image

Published In

Nature

DOI

EISSN

1476-4687

Publication Date

June 15, 2017

Volume

546

Issue

7658

Start / End Page

421 / 425

Location

England

Related Subject Headings

  • Th2 Cells
  • Th17 Cells
  • Th1 Cells
  • T-Lymphocytes, Regulatory
  • T-Box Domain Proteins
  • Mice
  • Male
  • Lymphocyte Activation
  • Immune Tolerance
  • General Science & Technology