Schramm Christoph, Huber Samuel, Protschka Martina, Czochra P, Burg Jürgen, Schmitt Edgar, Lohse Ansgar W, Galle Peter R, Blessing Manfred
Department of Medicine, Johannes Gutenberg-University, Mainz, Germany.
Int Immunol. 2004 Sep;16(9):1241-9. doi: 10.1093/intimm/dxh126. Epub 2004 Jul 12.
Factors influencing the development of CD4+CD25+ T-cells in vivo are poorly understood. In order to investigate the contribution of TGFbeta1 to the development and function of CD4+CD25+ T-cells, we generated a gain of function mutation resulting in the overexpression of an active form of TGFbeta1 in T-cells under control of the human CD2 promoter. In peripheral lymphoid organs and in the thymus, the frequency of CD4+CD25+ T-cells was increased in transgenic mice. This appeared to be due to an autocrine effect of TGFbeta on T-cells, since concomitant impairment of TGFbeta-signaling in double transgenic mice resulted in a phenotype similar to wild type. In contrast, in single transgenic mice with impaired TGFbeta-signaling in T-cells, CD4+CD25+ T-cell numbers were reduced in peripheral lymphoid organs but not in the thymus. In addition, TGFbeta was found to regulate the expression of Foxp3 in vivo, a transcription factor essential for the generation and function of regulatory T-cells. In CD4+CD25+ T-cells, TGFbeta1 increased the expression of Foxp3, whereas a decreased expression was seen in CD4+CD25+ T-cells with impaired TGFbeta-signaling. TGFbeta1 induced the expression of IL-10 in transgenic T-cells, but the increased in vitro suppressive capacity observed in transgenic CD4+CD25+ T-cells was due to the secretion of TGFbeta and not IL-10. Therefore, our study provides in vivo evidence for a role of TGFbeta in the homeostasis of CD4+CD25+ T-cells.
目前对体内影响CD4+CD25+ T细胞发育的因素了解甚少。为了研究转化生长因子β1(TGFbeta1)对CD4+CD25+ T细胞发育和功能的作用,我们通过在人CD2启动子控制下,在T细胞中产生功能获得性突变,使活性形式的TGFbeta1过表达。在转基因小鼠的外周淋巴器官和胸腺中,CD4+CD25+ T细胞的频率增加。这似乎是由于TGFbeta对T细胞的自分泌作用,因为双转基因小鼠中TGFbeta信号的同时受损导致了与野生型相似的表型。相反,在T细胞中TGFbeta信号受损的单转基因小鼠中,外周淋巴器官中CD4+CD25+ T细胞数量减少,但胸腺中未减少。此外,发现TGFbeta在体内调节Foxp3的表达,Foxp3是调节性T细胞产生和功能所必需的转录因子。在CD4+CD25+ T细胞中,TGFbeta1增加Foxp3的表达,而在TGFbeta信号受损的CD4+CD25+ T细胞中则观察到表达降低。TGFbeta1在转基因T细胞中诱导白细胞介素-10(IL-10)的表达,但转基因CD4+CD25+ T细胞中观察到的体外抑制能力增加是由于TGFbeta的分泌而不是IL-10。因此,我们的研究为TGFbeta在CD4+CD25+ T细胞稳态中的作用提供了体内证据。