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Sense and antisense transcription are associated with distinct chromatin architectures across genes

机译:有义和反义转录与跨基因的独特染色质结构相关

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Genes from yeast to mammals are frequently subject to non-coding transcription of their antisense strand; however the genome-wide role for antisense transcription remains elusive. As transcription influences chromatin structure, we took a genome-wide approach to assess which chromatin features are associated with nascent antisense transcription, and contrast these with features associated with nascent sense transcription. We describe a distinct chromatin architecture at the promoter and gene body specifically associated with antisense transcription, marked by reduced H2B ubiquitination, H3K36 and H3K79 trimethylation and increased levels of H3 acetylation, chromatin remodelling enzymes, histone chaperones and histone turnover. The difference in sense transcription between genes with high or low levels of antisense transcription is slight; thus the antisense transcription- associated chromatin state is not simply analogous to a repressed state. Using mutants in which the level of antisense transcription is reduced at GAL1, or altered genome- wide, we show that non- coding transcription is associated with high H3 acetylation and H3 levels across the gene, while reducing H3K36me3. Set1 is required for these antisense transcription- associated chromatin changes in the gene body. We propose that nascent antisense and sense transcription have fundamentally distinct relationships with chromatin, and that both should be considered canonical features of eukaryotic genes.
机译:从酵母到哺乳动物的基因经常受到其反义链的非编码转录;然而,全基因组反义转录的作用仍然难以捉摸。由于转录影响染色质结构,我们采用了全基因组方法来评估哪些染色质特征与新生反义转录有关,并将这些特征与新生有义转录有关。我们描述了在启动子和特定与反义转录相关的基因体上独特的染色质结构,其特征在于减少的H2B泛素化,H3K36和H3K79三甲基化和H3乙酰化水平,染色质重塑酶,组蛋白伴侣和组蛋白更新。反义转录水平高或低的基因之间的有义转录差异很小;因此,反义转录相关的染色质状态不仅仅类似于抑制状态。使用在GAL1处反义转录水平降低或全基因组改变的突变体,我们显示非编码转录与整个基因中的高H3乙酰化和H3水平相关,同时降低了H3K36me3。 Set1是基因体内这些反义转录相关的染色质变化所必需的。我们建议新生的反义和有义转录与染色质具有根本不同的关系,并且两者都应被认为是真核基因的典型特征。

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