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Stat5a/b在直接调控Foxp3中的非冗余作用。

Nonredundant roles for Stat5a/b in directly regulating Foxp3.

作者信息

Yao Zhengju, Kanno Yuka, Kerenyi Marc, Stephens Geoffrey, Durant Lydia, Watford Wendy T, Laurence Arian, Robinson Gertraud W, Shevach Ethan M, Moriggl Richard, Hennighausen Lothar, Wu Changyou, O'Shea John J

机构信息

Molecular Immunology and Inflammation Branch, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, MD 20892-1820, USA.

出版信息

Blood. 2007 May 15;109(10):4368-75. doi: 10.1182/blood-2006-11-055756. Epub 2007 Jan 16.

Abstract

Stats (signal transducers and activators of transcription) regulate multiple aspects of T-cell fate. T regulatory (Treg) cells are a critical subset that limits immune responses, but the relative importance of Stat5a/b versus Stat3 for Treg cell development has been contentious. We observed that peripheral CD25(+)CD4(+) T cells were reduced in Stat5(DeltaN) mice; however, the levels of Foxp3, a transcription factor that is critical for Treg cells, were normal in splenic CD4(+) T cells even though they were reduced in the thymus. In contrast, complete deletion of Stat5a/b (Stat5(-/-)) resulted in dramatic reduction in CD25- or Foxp3-expressing CD4(+) T cells. An intrinsic requirement was demonstrated by reduction of Stat5a/b in CD4-expressing cells and by stem cell transplantation using Stat5(-/-) fetal liver cells. Stat5a/b were also required for optimal induction of Foxp3 in vitro and bound directly to the Foxp3 gene. Reduction of Stat3 in T cells did not reduce the numbers of Treg cells in the thymus or spleen; however, Stat3 was required for IL-6-dependent down-regulation of Foxp3. Therefore, we conclude that Stat5a/b have an essential, nonredundant role in regulating Treg cells, and that Stat3 and Stat5a/b appear to have opposing roles in the regulation of Foxp3.

摘要

信号转导子和转录激活子(Stats)调节T细胞命运的多个方面。调节性T(Treg)细胞是限制免疫反应的关键亚群,但Stat5a/b与Stat3在Treg细胞发育中的相对重要性一直存在争议。我们观察到,Stat5(DeltaN)小鼠外周血CD25(+)CD4(+)T细胞减少;然而,尽管脾脏CD4(+)T细胞中Treg细胞关键转录因子Foxp3的水平在胸腺中降低,但在脾脏CD4(+)T细胞中却是正常的。相比之下,Stat5a/b的完全缺失(Stat5(-/-))导致表达CD25或Foxp3的CD4(+)T细胞显著减少。通过在表达CD4的细胞中减少Stat5a/b以及使用Stat5(-/-)胎肝细胞进行干细胞移植,证明了内在需求。体外最佳诱导Foxp3也需要Stat5a/b,且Stat5a/b直接与Foxp3基因结合。T细胞中Stat3的减少并未降低胸腺或脾脏中Treg细胞的数量;然而,Stat3是IL-6依赖性下调Foxp3所必需的。因此,我们得出结论,Stat5a/b在调节Treg细胞方面具有重要的、非冗余的作用,并且Stat3和Stat5a/b在Foxp3的调节中似乎具有相反的作用。

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