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Improvement of Foxp3 stability through CNS2 demethylation by TET enzyme induction and activation

机译:通过TET酶诱导和激活使CNS2去甲基化来改善Foxp3稳定性

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摘要

Since induced regulatory T cells (iTregs) can be produced in a large quantity in vitro, these cells are expected to be clinically useful to induce immunological tolerance in various immunological diseases. Foxp3 (Forkhead box P3) expression in iTregs is, however, unstable due to the lack of demethylation of the CpG island in the conserved non-coding sequence 2 (CNS2) of the Foxp3 locus. To facilitate the demethylation of CNS2, we over-expressed the catalytic domain (CD) of the ten-eleven translocation (TET) protein, which catalyzes the steps of the iterative demethylation of 5-methylcytosine. TET-CD over-expression in iTregs resulted in partial demethylation of CNS2 and stable Foxp3 expression. We also discovered that TET expression was enhanced under low oxygen (5%) culture conditions, which facilitated CNS2 DNA demethylation and stabilization of Foxp3 expression in a TET2- and TET3-dependent manner. In combination with vitamin C treatment, which has been reported to enhance TET catalytic activity, iTregs generated under low oxygen conditions retained more stable Foxp3 expression in vitro and in vivo and exhibited stronger suppression activity in a colitis model compared with untreated iTregs. Our data indicate that the induction and activation of TET enzymes in iTregs would be an effective method for Treg-mediated adoptive immunotherapy.
机译:由于诱导的调节性T细胞(iTregs)可以在体外大量产生,因此预期这些细胞在临床上可用于诱导各种免疫疾病中的免疫耐受。但是,由于在Foxp3基因座的保守非编码序列2(CNS2)中缺少CpG岛的去甲基化作用,因此iTregs中的Foxp3(Forkhead box P3)表达不稳定。为了促进CNS2的去甲基化,我们过表达了十一个十一易位(TET)蛋白的催化结构域(CD),它催化了5-甲基胞嘧啶的迭代去甲基化步骤。 TET-CD在iTregs中的过表达导致CNS2的部分去甲基化和稳定的Foxp3表达。我们还发现,在低氧(5%)培养条件下,TET表达得以增强,这有助于CNS2 DNA脱甲基化并以TET2和TET3依赖性方式稳定Foxp3表达。结合维生素C处理(据报道可增强TET催化活性),在低氧条件下产生的iTregs在体外和体内均保持更稳定的Foxp3表达,与未治疗的iTregs相比,在结肠炎模型中表现出更强的抑制活性。我们的数据表明,iTregs中TET酶的诱导和激活将是Treg介导的过继免疫疗法的有效方法。

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