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The undermethylated state of a CpG island region in igf2 transgenes is dependent on the H19 enhancers.

机译:igf2转基因中CpG岛区域的甲基化不足状态取决于H19增强子。

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CpG islands are GC-rich regions located in the promoter regions of housekeeping genes and many tissue-specific genes. While most CpG islands are normally unmethylated, island methylation can occur and is associated with silencing of the corresponding gene. Experiments with transgenic mice and DNA transfection in pluripotential embryonic cells have led to the conclusion that the information required for protecting the islands from methylation is contained within the CpG islands themselves and have identified Sp1 binding sites as an important element in establishing and/or maintaining the methylation-free state of CpG islands. To examine the generality of these observations, we analyzed the methylation of one of the mouse Igf2 CpG islands and its flanks in transgenic mice. We observed that the undermethylated state of this region is dependent on the presence of a separate cis-regulatory element, the H19 enhancers. These tissue-specific enhancers had a ubiquitous, non-tissue-specific effect on island region methylation. Structural alterations outside of the island and these enhancers also affected this region's methylation. These findings indicate that the methylation of some CpG island-containing regions is more sensitive than previously believed to the activity of distant cis-regulatory elements and to structural alterations in nonisland sequences in cis. Copyright 1999 Academic Press.
机译:CpG岛是位于管家基因和许多组织特异性基因的启动子区域的富含GC的区域。虽然大多数CpG岛通常未甲基化,但岛甲基化可能会发生并与相应基因的沉默相关。用多能胚胎细胞进行转基因小鼠和DNA转染的实验得出的结论是,保护孤岛免受甲基化所需的信息包含在CpG孤岛本身中,并已确定Sp1结合位点是建立和/或维持其功能的重要元素。 CpG岛无甲基化状态。为了检查这些观察的一般性,我们分析了转基因小鼠中小鼠Igf2 CpG岛之一及其侧面的甲基化。我们观察到该区域的甲基化不足状态取决于单独的顺式调控元件H19增强子的存在。这些组织特异性增强剂对岛区甲基化具有普遍存在的非组织特异性作用。岛外的结构变化和这些增强剂也影响了该地区的甲基化。这些发现表明,某些CpG岛含有区的甲基化比以前认为的对远处的顺式调控元件的活性以及对顺式中非岛序列的结构改变更为敏感。版权所有1999 Academic Press。

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