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An enhancer screen identifies new suppressors of small-RNA-mediated epigenetic gene silencing

机译:增强子屏幕识别小RNA介导的表观遗传基因沉默的新抑制作用

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摘要

Small non-protein coding RNAs are involved in pathways that control the genome at the level of chromatin. In Schizosaccharomyces pombe , small interfering RNAs (siRNAs) are required for the faithful propagation of heterochromatin that is found at peri-centromeric repeats. In contrast to repetitive DNA, protein-coding genes are refractory to siRNA-mediated heterochromatin formation, unless siRNAs are expressed in mutant cells. Here we report the identification of 20 novel mutant alleles that enable de novo formation of heterochromatin at a euchromatic protein-coding gene by using trans -acting siRNAs as triggers. For example, a single amino acid substitution in the pre-mRNA cleavage factor Yth1 enables siRNAs to trigger silent chromatin formation with unparalleled efficiency. Our results are consistent with a kinetic nascent transcript processing model for the inhibition of small-RNA-directed de novo formation of heterochromatin and lay a foundation for further mechanistic dissection of cellular activities that counteract epigenetic gene silencing.
机译:小型非蛋白质编码RNA参与控制染色质水平的基因组的途径。在Schizosaccharomyces Pombe中,在PERI-焦化重复的杂种甘氨酸的忠实繁殖中需要小干扰RNA(siRNA)。与重复DNA相比,除非siRNA在突变细胞中表达,否则蛋白质编码基因是难治性对siRNA介导的异铬甜素形成的难治性。在这里,我们通过使用作为触发器的递转剂的siRNA来说,在欧洲蛋白编码基因中鉴定20个新型突变等位基因,使得在欧洲蛋白质编码基因中能够进行异铬酰脲。例如,前mRNA裂解因子YTH1中的单个氨基酸取代使得siRNA能够以无与伦比的效率引发沉默的染色质形成。我们的结果与动力学新生转录物加工模型一致,用于抑制异铬胺的小RNA染色的脱诺,为抵消表观遗传基因沉默的细胞活性的进一步机械解剖。

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