首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Induction of DNA Demethylation Depending on Two Sets of Sox2 and Adjacent Oct3/4 Binding Sites (Sox-Oct Motifs) within the Mouse H19/Insulin-like Growth Factor 2 (Igf2) Imprinted Control Region
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Induction of DNA Demethylation Depending on Two Sets of Sox2 and Adjacent Oct3/4 Binding Sites (Sox-Oct Motifs) within the Mouse H19/Insulin-like Growth Factor 2 (Igf2) Imprinted Control Region

机译:DNA脱甲基的诱导取决于小鼠H19 /胰岛素样生长因子2(Igf2)印迹控制区域内的两组Sox2和相邻的Oct3 / 4结合位点(Sox-Oct母题)

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摘要

DNA demethylation is used to establish and maintain an unmethylated state. The molecular mechanisms to induce DNA demethylation at a particular genomic locus remain unclear. The mouse H19/insulin-like growth factor 2 (Igf2) imprinted control region (ICR) is a methylation state-sensitive insulator that regulates transcriptional activation of both genes. The unmethylated state of the ICR established in female germ cells is maintained during development, resisting the wave of genome-wide de novo methylation. We previously demonstrated that a DNA fragment (fragment b) derived from this ICR-induced DNA demethylation when it was transfected into undifferentiated mouse embryonal carcinoma cell lines. Moreover, two octamer motifs within fragment b were necessary to induce this DNA demethylation. Here, we demonstrated that both octamer motifs and their flanking sequences constitute Sox-Oct motifs (SO1 and SO2) and that the SO1 region, which requires at least four additional elements, including the SO2 region, contributes significantly to the induction of high-frequency DNA demethylation as a Sox-Oct motif. Moreover, RNAi-mediated inhibition of Oct3/4 expression in P19 cells resulted in a reduced DNA demethylation frequency of fragment b but not of the adenine phosphoribosyltransferase gene CpG island. The Sox motif of SO1 could function as a sensor for a hypermethylated state of the ICR to repress demethylation activity. These results indicate that Sox-Oct motifs in the ICR determine the cell type, DNA region, and allele specificity of DNA demethylation. We propose a link between the mechanisms for maintenance of the unmethylated state of the H19/Igf2 ICR and the undifferentiated cell-specific induction of DNA demethylation.
机译:DNA脱甲基用于建立和维持未甲基化状态。尚不清楚在特定基因组位点诱导DNA去甲基化的分子机制。小鼠H19 /胰岛素样生长因子2(Igf2)印迹控制区(ICR)是甲基化状态敏感的绝缘子,可调节两个基因的转录激活。在雌性生殖细胞中建立的ICR的未甲基化状态在发育过程中得以维持,抵抗了全基因组从头甲基化的浪潮。我们先前证明了,当将其转染到未分化的小鼠胚胎癌细胞系中时,该ICR诱导的DNA去甲基化作用衍生出一个DNA片段(片段b)。而且,片段b内的两个八聚体基序对于诱导该DNA去甲基化是必需的。在这里,我们证明了八聚体基序及其侧翼序列均构成了Sox-Oct基序(SO1和SO2),并且SO1区域(至少需要包括SO2区域在内的至少四个其他元素)对高频感应有重大贡献DNA脱甲基化作为Sox-Oct基序。此外,RNAi介导的P19细胞中Oct3 / 4表达的抑制导致片段b的DNA去甲基化频率降低,但腺嘌呤磷酸核糖基转移酶基因CpG岛却没有降低。 SO1的Sox基序可以充当ICR的高甲基化状态的传感器,以抑制去甲基化活性。这些结果表明,ICR中的Sox-Oct基序决定了细胞类型,DNA区域和DNA去甲基化的等位基因特异性。我们提出了维持H19 / Igf2 ICR的未甲基化状态的机制与DNA脱甲基化的未分化细胞特异性诱导之间的联系。

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