首页> 美国卫生研究院文献>Nucleic Acids Research >CpG methylation plays a vital role in determining tissue- and cell-specific expression of the human cell-death-inducing DFF45-like effector A gene through the regulation of Sp1/Sp3 binding
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CpG methylation plays a vital role in determining tissue- and cell-specific expression of the human cell-death-inducing DFF45-like effector A gene through the regulation of Sp1/Sp3 binding

机译:CpG甲基化在通过调节Sp1 / Sp3结合来确定人类细胞死亡诱导DFF45样效应子A基因的组织和细胞特异性表达中起着至关重要的作用

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摘要

Cell-death-inducing DFF45-like effector A (CIDE-A) belongs to a family of proapoptotic proteins, the expression of which is highly restricted in human tissues and cells. Here, the core region of the human CIDE-A promoter was characterized. Surprisingly, two Sp1/Sp3-binding sites, rather than tissue-specific transcription factors, were found to be required for the promoter activity. Although the ubiquitously expressed Sp1 and Sp3 were crucial, they alone could not adequately regulate the specific expression of CIDE-A. We found that the expression of CIDE-A was further regulated by CpG methylation of the promoter region. By performing bisulfite sequencing, we observed dense CpG methylation of the promoter region in tissues and cells with low or no expression of CIDE-A but not in tissues with high level of CIDE-A expression. In vitro methylation of this region showed significantly reduced transcriptional activity. Treatment of CIDE-A-negative cells with 5-aza-2′-deoxycytidine demethylated the CpG sites; this opened the closed chromatin conformation and markedly enhanced the binding affinity of Sp1/Sp3 to the promoter in vivo, thereby restoring CIDE-A expression. These data indicated that CpG methylation plays a crucial role in establishing and maintaining tissue- and cell-specific transcription of the CIDE-A gene through the regulation of Sp1/Sp3 binding.
机译:诱导细胞死亡的DFF45样效应子A(CIDE-A)属于促凋亡蛋白家族,其表达在人体组织和细胞中受到高度限制。在此,表征了人类CIDE-A启动子的核心区域。令人惊讶地,发现启动子活性需要两个Sp1 / Sp3结合位点,而不是组织特异性转录因子。尽管普遍表达的Sp1和Sp3至关重要,但仅靠它们不能充分调节CIDE-A的特异性表达。我们发现启动子区域的CpG甲基化进一步调节了CIDE-A的表达。通过执行亚硫酸氢盐测序,我们观察到在CIDE-A表达低或没有的组织和细胞中启动子区域的密集CpG甲基化,而在CIDE-A表达水平高的组织中没有。该区域的体外甲基化显示明显降低的转录活性。用5-氮杂-2'-脱氧胞苷处理CIDE-A阴性细胞使CpG位点脱甲基;这打开了封闭的染色质构象,并显着增强了Sp1 / Sp3在体内与启动子的结合亲和力,从而恢复了CIDE-A的表达。这些数据表明,CpG甲基化通过调节Sp1 / Sp3的结合在建立和维持CIDE-A基因的组织和细胞特异性转录中起着至关重要的作用。

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