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Impact of 5-aza-2'-deoxycytidine and epigallocatechin-3-gallate for induction of human regulatory T cells.

机译:5-氮杂-2'-脱氧胞苷和表没食子儿茶素-3-没食子酸酯对人调节性T细胞的诱导作用。

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摘要

The epigenetic regulation of transcription factor genes is critical for T-cell lineage specification. A specific methylation pattern within a conserved region of the lineage specifying transcription factor gene FOXP3, the Treg-specific demethylated region (TSDR), is restricted to regulatory T (Treg) cells and is required for stable expression of FOXP3 and suppressive function. We analysed the impact of hypomethylating agents 5-aza-2'-deoxycytidine and epigallocatechin-3-gallate on human CD4(+)  CD25(-) T cells for generating demethylation within FOXP3-TSDR and inducing functional Treg cells. Gene expression, including lineage-specifying transcription factors of the major T-cell lineages and their leading cytokines, functional properties and global transcriptome changes were analysed. The FOXP3-TSDR methylation pattern was determined by using deep amplicon bisulphite sequencing. 5-aza-2'-deoxycytidine induced FOXP3-TSDR hypomethylation and expression of the Treg-cell-specific genes FOXP3 and LRRC32. Proliferation of 5-aza-2'-deoxycytidine-treated cells was reduced, but the cells did not show suppressive function. Hypomethylation was not restricted to FOXP3-TSDR and expression of master transcription factors and leading cytokines of T helper type 1 and type 17 cells were induced. Epigallocatechin-3-gallate induced global DNA hypomethylation to a lesser extent than 5-aza-2'-deoxycitidine, but no relevant hypomethylation within FOXP3-TSDR or expression of Treg-cell-specific genes. Neither of the DNA methyltransferase inhibitors induced fully functional human Treg cells. 5-aza-2'-deoxycitidine-treated cells resembled Treg cells, but they did not suppress proliferation of responder cells, which is an essential capability to be used for Treg cell transfer therapy. Using a recently developed targeted demethylation technology might be a more promising approach for the generation of functional Treg cells.
机译:转录因子基因的表观遗传调控对于T细胞谱系规范至关重要。在指定转录因子基因FOXP3的谱系保守区域内,Treg特异性去甲基化区域(TSDR)内的特定甲基化模式仅限于调节性T(Treg)细胞,对于FOXP3的稳定表达和抑制功能是必需的。我们分析了次甲基化剂5-氮杂2'-脱氧胞苷和epigallocatechin-3-gallate对人CD4(+)CD25(-)T细胞的影响,以在FOXP3-TSDR内产生脱甲基并诱导功能性Treg细胞。分析基因表达,包括主要T细胞谱系的谱系特异性转录因子及其主要细胞因子,功能特性和整体转录组变化。 FOXP3-TSDR甲基化模式是通过使用深度扩增子亚硫酸氢盐测序来确定的。 5-氮杂2'-脱氧胞苷诱导FOXP3-TSDR甲基化不足以及Treg细胞特异性基因FOXP3和LRRC32的表达。经5-氮杂-2'-脱氧胞苷处理的细胞的增殖减少,但细胞未显示抑制功能。次甲基化不仅限于FOXP3-TSDR,还诱导了1型和17型T辅助细胞的主转录因子和主要细胞因子的表达。 Epigallocatechin-3-gallate诱导的总体DNA低甲基化程度小于5-aza-2'-脱氧胞苷,但在FOXP3-TSDR内或Treg细胞特异性基因的表达中没有相关的低甲基化。两种DNA甲基转移酶抑制剂均未诱导人全功能Treg细胞。 5-氮杂2'-脱氧胞苷处理的细胞类似于Treg细胞,但它们不抑制应答细胞的增殖,这是用于Treg细胞转移疗法的基本能力。使用最近开发的靶向脱甲基技术可能是功能性Treg细胞生成的一种更有希望的方法。

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