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Induction of 6-sulfated glycans with cell adhesion activity via T-bet and GATA-3 in human helper T cells

机译:通过T-bet和GATA-3在人辅助T细胞中诱导具有细胞粘附活性的6-硫酸化聚糖

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Background: Cell surface 6-sulfated glycans play important roles in various immunological events through cell-to-cell interactions. The 6-sulfation process is mediated by 6-sulfotransferase family isoenzymes. We previously demonstrated that GlcNAc6ST-1, one of the isoenzyme genes, is induced by GATA-3 and NF-κB in human helper T (Th) cells. However, transcriptional regulation of HEC-GlcNAc6ST, another isoenzyme important in Th cells, remains unclear. Methods: 5′-RACE analysis, chromatin immunoprecipitation, and reporter assays were performed to reveal transcriptional regulation of HEC-GlcNAc6ST. RNA-knockdown and forced expression experiments were performed to demonstrate the contribution of HEC-GlcNAc6ST to the 6-sulfated glycan expression. Results: We identified potential binding sites of Sp1, T-bet, and GATA-3 in the HEC-GlcNAc6ST promoter. Reporter assays indicated that transfection of Sp1 enhanced the activity, whereas mithramycin A, an Sp1-specific inhibitor, repressed it. Transfection of T-bet increased the activity, which was inhibited by introducing a mutation into the potential T-bet binding site. GATA-3 alone could not elevate the activity, although co-transfection of protein kinase A, which is known to enhance IL-5 transcription in Th2 cells through phosphorylation of GATA-3, caused elevation. RNA-knockdown and forced expression of HEC-GlcNAc6ST in Jurkat cells down- and up-regulated α2,6-sialylated 6-sulfo N-acetyllactosamine, a preferential ligand for B-cell-specific CD22 antigen, respectively. From these results, we concluded that T-bet and GATA-3 as well as Sp1 control the expression of glycan with cell-adhesion activity by regulating HEC-GlcNAc6ST transcription in Th cells. General significance: These results may provide a clue to biological regulation of Th-cell interaction with selectins and other carbohydrate-recognition molecules by T-bet and GATA-3.
机译:背景:细胞表面6-硫酸化聚糖通过细胞间相互作用在各种免疫学事件中起重要作用。 6-硫酸化过程是由6-磺基转移酶家族同工酶介导的。我们先前证明,GlcNAc6ST-1是同工酶基因之一,在人辅助T(Th)细胞中被GATA-3和NF-κB诱导。然而,尚不清楚在Th细胞中另一个重要的同功酶HEC-GlcNAc6ST的转录调控。方法:进行5'-RACE分析,染色质免疫沉淀和报告基因分析,揭示HEC-GlcNAc6ST的转录调控。进行了RNA敲低和强迫表达实验,以证明HEC-GlcNAc6ST对6-硫酸化聚糖表达的贡献。结果:我们在HEC-GlcNAc6ST启动子中鉴定了Sp1,T-bet和GATA-3的潜在结合位点。记者分析表明,Sp1的转染增强了活性,而Sp1特异性抑制剂光神霉素A抑制了它的活性。 T-bet的转染增加了活性,其通过将突变引入潜在的T-bet结合位点而被抑制。尽管已知通过GATA-3的磷酸化增强Th2细胞中IL-5转录的蛋白激酶A的共转染引起了升高,但是单独的GATA-3不能提高活性。在Jurkat细胞中RNA抑制和HEC-GlcNAc6ST的强制表达分别下调和上调了α2,6-唾液酸化的6硫代N-乙酰基乳糖胺(B细胞特异性CD22抗原的优先配体)。从这些结果,我们得出结论,T-bet和GATA-3以及Sp1通过调节Th细胞中的HEC-GlcNAc6ST转录来控制具有细胞粘附活性的聚糖的表达。一般意义:这些结果可能为通过T-bet和GATA-3对Th细胞与选择素和其他碳水化合物识别分子相互作用的生物学调控提供线索。

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