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Foxp3 表达对于诱导治疗性组织耐受是必需的。

Foxp3 expression is required for the induction of therapeutic tissue tolerance.

机构信息

Sir William Dunn School of Pathology, Oxford University, Oxford OX1 3RE, United Kingdom.

出版信息

J Immunol. 2012 Oct 15;189(8):3947-56. doi: 10.4049/jimmunol.1200449. Epub 2012 Sep 17.

Abstract

CD4(+)Foxp3(+) regulatory T cells (Treg) are essential for immune homeostasis and maintenance of self-tolerance. They are produced in the thymus and also generated de novo in the periphery in a TGF-β-dependent manner. Foxp3(+) Treg are also required to achieve tolerance to transplanted tissues when induced by coreceptor or costimulation blockade. Using TCR-transgenic mice to avoid issues of autoimmune pathology, we show that Foxp3 expression is both necessary and sufficient for tissue tolerance by coreceptor blockade. Moreover, the known need in tolerance induction for TGF-β signaling to T cells can wholly be explained by its role in induction of Foxp3, as such signaling proved dispensable for the suppressive process. We analyzed the relative contribution of TGF-β and Foxp3 to the transcriptome of TGF-β-induced Treg and showed that TGF-β elicited a large set of downregulated signature genes. The number of genes uniquely modulated due to the influence of Foxp3 alone was surprisingly limited. Retroviral-mediated conditional nuclear expression of Foxp3 proved sufficient to confer transplant-suppressive potency on CD4(+) T cells and was lost once nuclear Foxp3 expression was extinguished. These data support a dual role for TGF-β and Foxp3 in induced tolerance, in which TGF-β stimulates Foxp3 expression, for which sustained expression is then associated with acquisition of tolerance.

摘要

CD4(+)Foxp3(+) 调节性 T 细胞 (Treg) 对于免疫稳态和自身耐受的维持至关重要。它们在胸腺中产生,也可以通过 TGF-β 依赖性方式在外周中重新生成。Foxp3(+)Treg 还需要通过共受体或共刺激阻断来实现对移植组织的耐受。我们使用 TCR 转基因小鼠来避免自身免疫病理问题,表明 Foxp3 表达对于共受体阻断诱导的组织耐受是必要且充分的。此外,T 细胞中 TGF-β 信号传导在诱导耐受中所必需的,完全可以通过其诱导 Foxp3 的作用来解释,因为这种信号传导对于抑制过程是可有可无的。我们分析了 TGF-β 和 Foxp3 对 TGF-β 诱导的 Treg 转录组的相对贡献,并表明 TGF-β 引发了大量下调的特征基因。由于 Foxp3 的单独影响而被独特调节的基因数量令人惊讶地有限。逆转录病毒介导的 Foxp3 条件性核表达足以赋予 CD4(+)T 细胞移植抑制效力,并且一旦核 Foxp3 表达被熄灭就会丧失。这些数据支持 TGF-β 和 Foxp3 在诱导耐受中的双重作用,其中 TGF-β 刺激 Foxp3 表达,而持续表达则与获得耐受相关。

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