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Transcription factors RUNX1 and RUNX3 in the induction and suppressive function of Foxp3+ inducible regulatory T cells

机译:转录因子RUNX1和RUNX3在Foxp3 +可诱导的调节性T细胞的诱导和抑制功能中

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摘要

Forkhead box P3 (FOXP3)+CD4+CD25+ inducible regulatory T (iT reg) cells play an important role in immune tolerance and homeostasis. In this study, we show that the transforming growth factor-β (TGF-β) induces the expression of the Runt-related transcription factors RUNX1 and RUNX3 in CD4+ T cells. This induction seems to be a prerequisite for the binding of RUNX1 and RUNX3 to three putative RUNX binding sites in the FOXP3 promoter. Inactivation of the gene encoding RUNX cofactor core-binding factor-β (CBFβ) in mice and small interfering RNA (siRNA)-mediated suppression of RUNX1 and RUNX3 in human T cells resulted in reduced expression of Foxp3. The in vivo conversion of naive CD4+ T cells into Foxp3+ iT reg cells was significantly decreased in adoptively transferred CbfbF/F CD4-cre naive T cells into Rag2−/− mice. Both RUNX1 and RUNX3 siRNA silenced human T reg cells and CbfbF/F CD4-cre mouse T reg cells showed diminished suppressive function in vitro. Circulating human CD4+ CD25high CD127 T reg cells significantly expressed higher levels of RUNX3, FOXP3, and TGF-β mRNA compared with CD4+CD25 cells. Furthermore, FOXP3 and RUNX3 were colocalized in human tonsil T reg cells. These data demonstrate Runx transcription factors as a molecular link in TGF-β–induced Foxp3 expression in iT reg cell differentiation and function.
机译:前叉箱P3(FOXP3) + CD4 + CD25 + 诱导型调节性T(iT reg)细胞在免疫耐受和体内平衡中起重要作用。本研究表明,转化生长因子-β(TGF-β)诱导了CD4 + T细胞中Runt相关转录因子RUNX1和RUNX3的表达。这种诱导似乎是RUNX1和RUNX3与FOXP3启动子中三个假定的RUNX结合位点结合的先决条件。小鼠中RUNX辅因子核心结合因子-β(CBFβ)编码基因的失活以及人T细胞中RUNX1和RUNX3的小干扰RNA介导的抑制作用导致Foxp3表达降低。在过继转移的Cbfb F / F CD4-cre中,幼稚CD4 + T细胞向Foxp3 + iT reg细胞的体内转化显着降低。幼稚的T细胞进入Rag2 -/-小鼠。 RUNX1和RUNX3 siRNA均使人T reg细胞沉默,而Cbfb F / F CD4-cre小鼠T reg细胞在体外抑制作用减弱。循环人CD4 + CD25 CD127 - T reg细胞表达的RUNX3,FOXP3和TGF-βmRNA水平明显高于CD4 < sup> + CD25 -细胞。此外,FOXP3和RUNX3在人类扁桃体T reg细胞中共定位。这些数据表明Runx转录因子是TGF-β诱导的iT reg细胞分化和功能中Foxp3表达的分子链接。

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