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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >TGF-beta1 modulates Foxp3 expression and regulatory activity in distinct CD4+ T cell subsets.
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TGF-beta1 modulates Foxp3 expression and regulatory activity in distinct CD4+ T cell subsets.

机译:TGF-beta1调节不同的CD4 + T细胞亚群中的Foxp3表达和调节活性。

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摘要

Although forkhead box p3 (Foxp3) expression is restricted to naturally occurring CD4(+) regulatory T cells (T(REG)), little is known about the various signals that regulate it in T cells. As TGF-beta has been reported to modulate Foxp3 expression in T cells, we investigated its effects on the induction or maintenance of regulatory functions in different CD4(+) T cell subsets. TGF-beta1 priming was able to promote differentiation of T(REG) cells from nonregulatory CD4(+)CD25(-) T cells in a concentration-dependent manner through Foxp3 induction. As CD4(+)CD25(-) T cells remain a highly heterogeneous population with variable degrees of antigen experience, we then examined the effect of TGF-beta1 on naive CD4(+)CD25(-)CD45RB(HIGH) T cells. Freshly isolated or TGF-beta1-treated CD4(+)CD25(-)CD45RB(HIGH) T cells never displayed any regulatory functions or significant Foxp3 expression following TCR activation. In stark contrast, freshly isolated CD4(+)CD25(-)CD45RB(LOW) cells, albeit expressing low levels ofFoxp3 mRNA and protein, were unable to suppress CD4(+) effector T cell proliferation but acquired regulatory activity and de novo Foxp3 expression following TGF-beta1 exposure. Furthermore, suppression was IL-10-dependent, as anti-IL-10 receptor antibody treatment abrogated this suppression completely, consistent with the ability of TGF-beta1-treated CD4(+)CD25(-)CD45RB(LOW) to synthesize IL-10 upon restimulation in vitro. Last, we show that TGF-beta1 treatment or blockade did not lead to enhanced expansion or function of naturally occurring CD4(+)CD25(+) T(REG) cells, although it maintained Foxp3 mRNA and protein expression. Altogether, TGF-beta1 promotes the induction of IL-10-secreting CD4(+) T(REG) cells from CD4(+)CD25(-)CD45RB(LOW) precursors through de novo Foxp3 production and maintains natural T(REG) cell peripheral homeostasis by sustaining Foxp3 expression.
机译:尽管叉头盒p3(Foxp3)的表达仅限于天然存在的CD4(+)调节性T细胞(T(REG)),但对于在T细胞中调节它的各种信号知之甚少。由于已经报道了TGF-β调节T细胞中Foxp3的表达,我们研究了其对不同CD4(+)T细胞亚群中调节功能的诱导或维持的影响。 TGF-beta1引发能够通过Foxp3诱导以浓度依赖的方式促进T(REG)细胞从非调节性CD4(+)CD25(-)T细胞分化。由于CD4(+)CD25(-)T细胞仍然是高度异质的人群,具有不同程度的抗原经历,因此我们检查了TGF-beta1对未用过的CD4(+)CD25(-)CD45RB(HIGH)T细胞的影响。新鲜分离或经TGF-β1处理的CD4(+)CD25(-)CD45RB(HIGH)T细胞在激活TCR后从未显示任何调节功能或明显的Foxp3表达。与之形成鲜明对比的是,新鲜分离的CD4(+)CD25(-)CD45RB(LOW)细胞尽管表达的Foxp3 mRNA和蛋白水平低,但不能抑制CD4(+)效应T细胞增殖,但具有调节活性并从头表达Foxp3 TGF-beta1暴露后。此外,抑制作用是IL-10-依赖性的,因为抗IL-10受体抗体治疗完全废除了这种抑制作用,这与TGF-β1处理的CD4(+)CD25(-)CD45RB(LOW)合成IL-体外再刺激时为10。最后,我们显示TGF-beta1处理或封锁虽然可以维持Foxp3 mRNA和蛋白质表达,但并未导致自然发生的CD4(+)CD25(+)T(REG)细胞增强的扩增或功能。总的来说,TGF-beta1通过从头产生Foxp3生产促进从CD4(+)CD25(-)CD45RB(LOW)前体诱导分泌IL-10-的CD4(+)T(REG)细胞,并维持天然T(REG)细胞通过维持Foxp3的表达实现周围稳态。

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