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Conversion of Peripheral CD4+CD25− Naive T Cells to CD4+CD25+ Regulatory T Cells by TGF-β Induction of Transcription Factor Foxp3

机译:通过转录因子Foxp3的TGF-β诱导将外周CD4 + CD25-幼稚T细胞转化为CD4 + CD25 +调节性T细胞

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摘要

CD4+CD25+ regulatory T cells (Treg) are instrumental in the maintenance of immunological tolerance. One critical question is whether Treg can only be generated in the thymus or can differentiate from peripheral CD4+CD25− naive T cells. In this paper, we present novel evidence that conversion of naive peripheral CD4+CD25− T cells into anergic/suppressor cells that are CD25+, CD45RB−/low and intracellular CTLA-4+ can be achieved through costimulation with T cell receptors (TCRs) and transforming growth factor β (TGF-β). Although transcription factor Foxp3 has been shown recently to be associated with the development of Treg, the physiological inducers for Foxp3 gene expression remain a mystery. TGF-β induced Foxp3 gene expression in TCR-challenged CD4+CD25− naive T cells, which mediated their transition toward a regulatory T cell phenotype with potent immunosuppressive potential. These converted anergic/suppressor cells are not only unresponsive to TCR stimulation and produce neither T helper cell 1 nor T helper cell 2 cytokines but they also express TGF-β and inhibit normal T cell proliferation in vitro. More importantly, in an ovalbumin peptide TCR transgenic adoptive transfer model, TGF-β–converted transgenic CD4+CD25+ suppressor cells proliferated in response to immunization and inhibited antigen-specific naive CD4+ T cell expansion in vivo. Finally, in a murine asthma model, coadministration of these TGF-β–induced suppressor T cells prevented house dust mite–induced allergic pathogenesis in lungs.
机译:CD4 + CD25 +调节性T细胞(Treg)有助于维持免疫耐受性。一个关键的问题是Treg是仅在胸腺中产生还是可以与外周CD4 + CD25-幼稚T细胞区分开。在本文中,我们提供了新的证据,即可以通过与T细胞受体(TCR)共刺激来实现将幼稚的外周CD4 + CD25- T细胞转化为CD25 +,CD45RB- / low和细胞内CTLA-4 +的无反应/抑制细胞。和转化生长因子β(TGF-β)。尽管最近已经表明转录因子Foxp3与Treg的发展有关,但是Foxp3基因表达的生理诱导剂仍然是一个谜。 TGF-β诱导了受TCR攻击的CD4 + CD25-幼稚T细胞中Foxp3基因表达,介导了它们向具有有效免疫抑制潜能的调节性T细胞表型的过渡。这些转化的厌氧/抑制细胞不仅不响应TCR刺激,并且不产生T辅助细胞1和T辅助细胞2细胞因子,而且它们还表达TGF-β并在体外抑制正常T细胞增殖。更重要的是,在卵清蛋白肽TCR转基因过继转移模型中,TGF-β转化的转基因CD4 + CD25 +抑制细胞响应免疫反应而增殖,并抑制了体内抗原特异性幼稚CD4 + T细胞的扩增。最后,在鼠类哮喘模型中,这些TGF-β诱导的抑制性T细胞的共同给药可预防屋尘螨诱导的肺部过敏性发病机理。

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