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首页> 外文期刊>BMC Medical Genomics >DNA methylation status of TBX20 in patients with tetralogy of Fallot
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DNA methylation status of TBX20 in patients with tetralogy of Fallot

机译:法洛四联症患者TBX20的DNA甲基化状态

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TBX20 plays an important role in heart development; however, its epigenetic regulation in the pathogenesis of tetralogy of Fallot (TOF) remains unclear. The methylation levels of the TBX20 promoter region in the right ventricular myocardial tissues of TOF and control samples were measured by the Sequenom MassARRAY platform. Bisulphite-sequencing PCR (BSP) was used to confirm the TBX20 methylation of CpG sites in cells. Dual-luciferase reporter assays were performed to detect the influence of TBX20 methylation and Sp1 transcription factors on gene activity. An electrophoretic mobility shift assay (EMSA) was used to explore the binding of the Sp1 transcription factor to the TBX20 promoter. TOF cases had a significantly lower TBX20_M1 methylation level than controls (median methylation: 20.40% vs. 38.73%; p?=?0.0047). The Sp1 transcription factor, which binds to Sp1 binding sites in the TBX20_M1 region and promotes TBX20 gene activity, was blocked by the methylation of Sp1 binding sites in normal controls. With decreasing methylation in the TOF cases, the Sp1 transcription factor can bind to its binding site within the TBX20 promoter M1 region and promote TBX20 gene expression. Hypomethylation of the TBX20 promoter region was observed in the TOF cases, and the high expression of the TBX20 gene may be caused by activated Sp1 transcription factor binding because of the decreasing methylation at the Sp1 transcription factor binding sites within TBX20_M1.
机译:TBX20在心脏发育中起重要作用;然而,其在法洛四联症(TOF)发病机理中的表观遗传调控仍不清楚。用Sequenom MassARRAY平台测量TOF和对照样品的右心室心肌组织中TBX20启动子区域的甲基化水平。亚硫酸氢盐测序PCR(BSP)用于确认细胞中CpG位点的TBX20甲基化。进行了双重荧光素酶报告基因检测,以检测TBX20甲基化和Sp1转录因子对基因活性的影响。电泳迁移率迁移分析(EMSA)用于探索Sp1转录因子与TBX20启动子的结合。 TOF病例的TBX20_M1甲基化水平明显低于对照组(中位甲基化:20.40%对38.73%; p = 0.0047)。 Sp1转录因子与TBX20_M1区域中的Sp1结合位点结合并促进TBX20基因活性,在正常对照中被Sp1结合位点的甲基化所阻断。在TOF病例中,随着甲基化程度的降低,Sp1转录因子可以与其在TBX20启动子M1区域内的结合位点结合并促进TBX20基因的表达。在TOF病例中观察到TBX20启动子区域的低甲基化,并且TBX20基因的高表达可能是由于激活的Sp1转录因子结合引起的,因为TBX20_M1内Sp1转录因子结合位点的甲基化降低。

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