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
Molecular Immunology and Inflammation Branch, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, MD 20892-1820, USA.
Blood. 2007 May 15;109(10):4368-75. doi: 10.1182/blood-2006-11-055756. Epub 2007 Jan 16.
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.
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。