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Developmental enhancers revealed by extensive DNA methylome maps of zebrafish early embryos

机译:斑马鱼早期胚胎的大量DNA甲基化图谱揭示了发育增强子

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摘要

DNA methylation undergoes dynamic changes during development and cell differentiation. Recent genome-wide studies discovered that tissue-specific differentially methylated regions (DMRs) often overlap tissue-specific distal cis-regulatory elements. However, developmental DNA methylation dynamics of the majority of the genomic CpGs outside gene promoters and CpG islands has not been extensively characterized. Here, we generate and compare comprehensive DNA methylome maps of zebrafish developing embryos. From these maps, we identify thousands of developmental stage-specific DMRs (dsDMRs) across zebrafish developmental stages. The dsDMRs contain evolutionarily conserved sequences, are associated with developmental genes and are marked with active enhancer histone posttranslational modifications. Their methylation pattern correlates much stronger than promoter methylation with expression of putative target genes. When tested in vivo using a transgenic zebrafish assay, 20 out of 20 selected candidate dsDMRs exhibit functional enhancer activities. Our data suggest that developmental enhancers are a major target of DNA methylation changes during embryogenesis.
机译:DNA甲基化在发育和细胞分化过程中发生动态变化。最近的全基因组研究发现,组织特异性差异甲基化区域(DMR)通常与组织特异性远端顺式调控元件重叠。但是,尚未广泛表征基因启动子和CpG岛以外的大多数基因组CpG的发育DNA甲基化动力学。在这里,我们生成并比较斑马鱼发育胚胎的全面DNA甲基化组图。从这些地图中,我们确定了斑马鱼发育阶段中成千上万个发育阶段特定的DMR(dsDMR)。 dsDMR包含进化保守序列,与发育基因相关,并标记有活性增强子组蛋白翻译后修饰。它们的甲基化模式与推定的靶基因表达比启动子甲基化强得多。当使用转基因斑马鱼测定法在体内进行测试时,从20个选定的候选dsDMR中选择20个显示出功能增强子活性。我们的数据表明,发育增强剂是胚胎发生过程中DNA甲基化变化的主要目标。

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