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转化生长因子β在体内调节CD4+CD25+ T细胞库及叉头框蛋白3的表达。

TGFbeta regulates the CD4+CD25+ T-cell pool and the expression of Foxp3 in vivo.

作者信息

Schramm Christoph, Huber Samuel, Protschka Martina, Czochra P, Burg Jürgen, Schmitt Edgar, Lohse Ansgar W, Galle Peter R, Blessing Manfred

机构信息

Department of Medicine, Johannes Gutenberg-University, Mainz, Germany.

出版信息

Int Immunol. 2004 Sep;16(9):1241-9. doi: 10.1093/intimm/dxh126. Epub 2004 Jul 12.

Abstract

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.

摘要

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。

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