Aarts-Riemens Tineke, Emmelot Maarten E, Verdonck Leo F, Mutis Tuna
Department of Clinical Chemistry and Hematology, University Medical Center Utrecht, Utrecht, The Netherlands.
Eur J Immunol. 2008 May;38(5):1381-90. doi: 10.1002/eji.200737590.
The forkhead/winged helix transcription factor (Foxp3) is expressed as two different isoforms in humans: the full-length isoform (Foxp3FL) and an alternative-splicing product lacking the exon 2 (Foxp3DeltaE2). We here studied the cellular distribution of Foxp3 isoforms by quantitative PCR and evaluated the functional outcome of retroviral transduction of Foxp3FL and Foxp3DeltaE2 genes into CD4(+)CD25(-) cells. In PBMC, both isoforms were preferentially expressed in CD4(+)CD25(hi) cells. In single-cell-sorted and expanded Treg, both Foxp3 isoforms were expressed simultaneously but without a fixed ratio. Forced expression of Foxp3FL or Foxp3DeltaE2 genes in CD4(+)CD25(-) T cells induced bona fide Treg that not only displayed Treg phenotype but also were anergic and mediated significant suppressive activity against CD3-activated CD4(+)CD25(-) cells. GFP(-) nontransduced cells or cells transduced with an empty vector showed no Treg phenotype, anergy or suppressive activities. In conclusion, our results reveal that both Foxp3 isoforms possess similar capacities to induce Treg; however, unnaturally high expression levels are required to convey Treg functions to CD4(+)CD25(-) cells. As both Foxp3 isoforms appear to be expressed in an independent fashion, studies aiming at quantification of Treg in peripheral blood or in tissue samples can benefit from determination of total Foxp3 levels rather than one of the isoforms.
叉头/翼状螺旋转录因子(Foxp3)在人类中以两种不同的异构体形式表达:全长异构体(Foxp3FL)和缺少外显子2的可变剪接产物(Foxp3DeltaE2)。我们在此通过定量PCR研究了Foxp3异构体的细胞分布,并评估了将Foxp3FL和Foxp3DeltaE2基因逆转录病毒转导至CD4(+)CD25(-)细胞后的功能结果。在PBMC中,两种异构体均优先在CD4(+)CD25(hi)细胞中表达。在单细胞分选和扩增的调节性T细胞(Treg)中,两种Foxp3异构体同时表达,但比例不固定。在CD4(+)CD25(-) T细胞中强制表达Foxp3FL或Foxp3DeltaE2基因可诱导出真正的Treg,这些Treg不仅表现出Treg表型,而且无反应性,并对CD3激活的CD4(+)CD25(-)细胞介导显著的抑制活性。绿色荧光蛋白(GFP)阴性的未转导细胞或用空载体转导的细胞未表现出Treg表型、无反应性或抑制活性。总之,我们的结果表明,两种Foxp3异构体诱导Treg的能力相似;然而,需要非自然的高表达水平才能将Treg功能赋予CD4(+)CD25(-)细胞。由于两种Foxp3异构体似乎以独立的方式表达,旨在对外周血或组织样本中的Treg进行定量的研究可通过测定总Foxp3水平而非其中一种异构体来获益。