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A developmental window of opportunity for imprinted gene silencing mediated by DNA methylation and the Kcnq1ot1 noncoding RNA

机译:DNA甲基化和Kcnq1ot1非编码RNA介导的印迹基因沉默的机会之窗

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摘要

The Kcnq1 imprinted domain encodes a paternally expressed noncoding RNA Kcnq1ot1 and several paternally repressed protein-coding genes. Transcriptional regulation is controlled by the Kcnq1ot1 gene whose maternal germline methylation imprint overlaps with the Kcnq1ot1 promoter. The domain can be divided into two groups of genes. One group is imprinted in all lineages and is reliant on DNA methylation for its imprinting. The other group contains genes that are imprinted specifically in the placenta and retain their imprinting in the absence of Dnmt1, the primary DNA maintenance methylase. In the placenta paternal Kcnq1ot1 expression is associated with the acquisition of repressive histone modifications throughout the domain. Using the Dnmt1o knockout, we have analyzed the effect of removing DNA maintenance methylation at the eight-cell stage on the Kcnq1 imprinted domain. In the placenta the expression of the normally silent maternal Kcnq1ot1 allele leads to reduced expression of the surrounding maternally expressed genes. This repression is seen in both the placental-specific imprinted genes and the ubiquitously imprinted genes. Conversely, reduction of functional Dnmt1 results solely in reduced expression of the ubiquitously imprinted genes in the placenta. This suggests that Kcnq1ot1 expression can epigenetically silence placentally imprinted genes in the cluster only during a specific developmental window. This highlights the possibility that Kcnq1ot1-mediated repression is temporally regulated leading to epigenetic silencing of placental-specific genes. We show that allele-specific histone modifications are still present in the Dnmt1 ?/? trophoblast at placental-specific imprinted loci and are likely responsible for maintaining the imprinting of these genes in the absence of DNA methylation.
机译:Kcnq1印迹域编码一个父本表达的非编码RNA Kcnq1ot1和几个父本抑制的蛋白质编码基因。转录调控受Kcnq1ot1基因控制,该基因的母本种系甲基化印记与Kcnq1ot1启动子重叠。该结构域可以分为两组基因。一组被印在所有谱系上,并且依赖于DNA甲基化的印记。另一组包含的基因在胎盘中具有特定的印记,并且在缺乏Dnmt1(主要的DNA维持甲基化酶)的情况下仍保留其印记。在胎盘中,父亲Kcnq1ot1的表达与整个域中抑制性组蛋白修饰的获得有关。使用Dnmt1o敲除,我们已经分析了在Kcnq1印迹结构域上在八细胞阶段去除DNA维持甲基化的影响。在胎盘中,正常沉默的母体Kcnq1ot1等位基因的表达导致周围母体表达基因的表达降低。这种抑制作用在胎盘特异性印迹基因和无处不在的印迹基因中均可见。相反,功能性Dnmt1的减少仅导致胎盘中普遍印记的基因的表达减少。这表明Kcnq1ot1表达只能在特定的发育窗口内才能在表观遗传上沉默簇中胎盘印迹基因。这突显了Kcnq1ot1介导的阻抑在时间上受到调节的可能性,从而导致胎盘特异性基因的表观遗传沉默。我们表明,等位基因特异的组蛋白修饰仍然存在于Dnmt1?/?中。 滋养层位于胎盘特异的印迹位点,在不存在DNA甲基化的情况下,可能负责维持这些基因的印迹。

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  • 来源
    《Mammalian Genome》 |2007年第1期|32-42|共11页
  • 作者单位

    Laboratory of Developmental Genetics and Imprinting The Babraham Institute Cambridge CB22 3AT UK;

    Laboratory of Developmental Genetics and Imprinting The Babraham Institute Cambridge CB22 3AT UK;

    Laboratory of Developmental Genetics and Imprinting The Babraham Institute Cambridge CB22 3AT UK;

    Laboratory of Developmental Genetics and Imprinting The Babraham Institute Cambridge CB22 3AT UK;

    Department of Molecular Genetics and Biochemistry University of Pittsburgh Pittsburgh Pennsylvania 15261 USA;

    Department of Molecular Genetics and Biochemistry University of Pittsburgh Pittsburgh Pennsylvania 15261 USA;

    Laboratory of Developmental Genetics and Imprinting The Babraham Institute Cambridge CB22 3AT UK;

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