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The Air Noncoding Rna Epigenetically Silences Transcription By Targeting G9a To Chromatin

机译:空气非编码Rna通过将G9a靶向染色质使表观遗传沉默

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A number of large noncoding RNAs (ncRNAs) epigenetically silence genes through unknown mechanisms, the Air ncRNA is imprinted-monoallelically expressed from the paternal allele. Air is required for allele-specific silencing of the cis-linked Slc22a3, Slc22a2, and Igf2r genes in mouse placenta. We show that Air interacts with the Slc22a3 promoter chromatin and the H3K9 histone methyltransferase G9a in placenta. Air accumulates at the Slc22a3 promoter in correlation with localized H3K9 methylation and transcriptional repression. Genetic ablation of G9a results in nonimprinted, biallelic transcription of Slc22a3. Truncated Air fails to accumulate at the Slc22a3 promoter, which results in reduced G9a recruitment and biallelic transcription. Our results suggest that Air, and potentially other large ncRNAs, target repressive histone-modifying activities through molecular interaction with specific chromatin domains to epigenetically silence transcription.
机译:许多大的非编码RNA(ncRNA)通过未知的机制在表观遗传上沉默基因,Air ncRNA从父本等位基因中被印迹单等位表达。小鼠胎盘中顺式连接的Slc22a3,Slc22a2和Igf2r基因的等位基因特异性沉默需要空气。我们显示空气与胎盘中的Slc22a3启动子染色质和H3K9组蛋白甲基转移酶G9a相互作用。空气积聚在Slc22a3启动子上,与局部H3K9甲基化和转录抑制相关。 G9a的遗传消融导致Slc22a3的非印迹双等位基因转录。截断的空气无法在Slc22a3启动子处积聚,从而导致G9a募集减少和双等位基因转录减少。我们的结果表明,Air和其他可能的大型ncRNA,通过与特定染色质域的分子相互作用靶向表观抑制组蛋白修饰的活性,从而表观遗传上沉默转录。

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