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Regulatory T cell lineage specification by the forkhead transcription factor foxp3.

机译:通过叉头转录因子foxp3调节T细胞谱系规范。

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Regulatory T cell-mediated dominant tolerance has been demonstrated to play an important role in the prevention of autoimmunity. Here, we present data arguing that the forkhead transcription factor Foxp3 acts as the regulatory T cell lineage specification factor and mediator of the genetic mechanism of dominant tolerance. We show that expression of Foxp3 is highly restricted to the subset alphabeta of T cells and, irrespective of CD25 expression, correlates with suppressor activity. Induction of Foxp3 expression in nonregulatory T cells does not occur during pathogen-driven immune responses, and Foxp3 deficiency does not impact the functional responses of nonregulatory T cells. Furthermore, T cell-specific ablation of Foxp3 is sufficient to induce the identical early onset lymphoproliferative syndrome observed in Foxp3-deficient mice. Analysis of Foxp3 expression during thymic development suggests that this mechanism is not hard-wired but is dependent on TCR/MHC ligand interactions.
机译:已经证明调节性T细胞介导的显性耐受在预防自身免疫中起重要作用。在这里,我们提出的数据争论叉头转录因子Foxp3充当调节性T细胞谱系规范因子和显性耐受的遗传机制的中介。我们表明Foxp3的表达高度限于T细胞的子集,无论CD25表达如何,均与抑制活性相关。在病原体驱动的免疫反应中不会发生非调节性T细胞中Foxp3表达的诱导,并且Foxp3缺乏不会影响非调节性T细胞的功能性反应。此外,Foxp3的T细胞特异性消融足以诱导在Foxp3缺陷小鼠中观察到的相同的早发性淋巴增生综合征。在胸腺发育过程中对Foxp3表达的分析表明,这种机制不是硬连线的,而是取决于TCR / MHC配体相互作用。

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