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首页> 外文期刊>The Journal of biological chemistry >Gene body methylation safeguards ribosomal DNA transcription by preventing PHF6-mediated enrichment of repressive histone mark H4K20me3
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Gene body methylation safeguards ribosomal DNA transcription by preventing PHF6-mediated enrichment of repressive histone mark H4K20me3

机译:基因体甲基化通过预防pHF6介导的抑制组蛋白标记H4K20ME3来保护核糖体DNA转录

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DNA methylation shows complex correlations with gene expression, and the role of promoter hypermethylation in repressing gene transcription has been well addressed. Emerging evidence indicates that gene body methylation promotes transcription; however, the underlying mechanisms remain to be further investigated. Here, using methylated DNA immunoprecipitation sequencing (MeDIP-seq), bisulfite genomic sequencing, and immunofluorescent labeling, we show that gene body methylation is indeed positively correlated with rRNA gene (rDNA) transcription. Mechanistically, gene body methylation is largely maintained by DNA methyltransferase 1 (DNMT1), deficiency or downregulation of which during myoblast differentiation or nutrient deprivation results in decreased gene body methylation levels, leading to increased gene body occupancy of plant homeodomain (PHD) finger protein 6 (PHF6). PHF6 binds to hypomethylated rDNA gene bodies where it recruits histone methyltransferase SUV4-20H2 to establish the repressive histone modification, H4K20me3, ultimately inhibiting rDNA transcription. These findings demonstrate that DNMT1-mediated gene body methylation safeguards rDNA transcription by preventing enrichment of repressive histone modifications, suggesting that gene body methylation serves to maintain gene expression in response to developmental and/or environmental stresses.
机译:DNA甲基化表现出与基因表达的复杂相关性,并且在抑制基因转录中的启动子高甲基化的作用得到了很好的解决。出现的证据表明基因体甲基化促进转录;但是,仍然需要进一步调查潜在机制。这里,使用甲基化DNA免疫沉淀序列(MEDIP-SEQ),亚硫酸氢盐基因组测序和免疫荧光标记,我们表明基因体甲基化与RRNA基因(RDNA)转录确实呈正相关。机械地,基因体甲基化主要由DNA甲基转移酶1(DNMT1),缺乏或下调,其在肌细胞分化或营养剥夺期间导致基因体内甲基化水平降低,导致植物同性恋(PHD)手指蛋白6的基因体内占用。 (phf6)。 PHF6与甲基甲基化的RDNA基因体结合,在那里促进组蛋白甲基转移酶SUV4-20H2,以建立抑制组蛋白改性H4K20ME3,最终抑制RDNA转录。这些发现表明,DNMT1介导的基因体甲基化通过防止抑制抑制组蛋白修饰来保护RDNA转录,表明基因体甲基化用于保持基因表达以应对发育和/或环境应激。

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