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Dicer Promotes Transcription Termination at Sites of Replication Stress to Maintain Genome Stability

机译:Dicer促进复制压力位点的转录终止,以维持基因组稳定性

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摘要

Nuclear RNAi is an important regulator of transcription and epigenetic modification, but the underlying mechanisms remain elusive. Using a genome-wide approach in the fission yeast S. pombe, we have found that Dcr1, but not other components of the canonical RNAi pathway, promotes the release of Pol II from the 30 end of highly transcribed genes, and, surprisingly, from antisense transcription of rRNA and tRNA genes, which are normally transcribed by Pol I and Pol III. These Dcr1-terminated loci correspond to sites of replication stress and DNA damage, likely resulting from transcription-replication collisions. At the rDNA loci, release of Pol II facilitates DNA replication and prevents homologous recombination, which would otherwise lead to loss of rDNA repeats especially during meiosis. Our results reveal a novel role for Dcr1-mediated transcription termination in genome maintenance and may account for widespread regulation of genome stability by nuclear RNAi in higher eukaryotes.
机译:核RNAi是转录和表观遗传修饰的重要调节剂,但其潜在机制仍然难以捉摸。使用裂变酵母粟酒裂殖酵母中的全基因组方法,我们发现Dcr1(而非规范RNAi途径的其他组件)促进高度转录的基因的30末端释放Pol II,并且令人惊讶地从rRNA和tRNA基因的反义转录,通常由Pol I和Pol III转录。这些Dcr1终止的基因座对应于复制压力和DNA损伤的位点,可能是由于转录-复制冲突引起的。在rDNA基因座上,Pol II的释放促进DNA复制并阻止同源重组,否则这将导致rDNA重复序列的丢失,尤其是在减数分裂期间。我们的研究结果揭示了Dcr1介导的转录终止在基因组维持中的新作用,并可能解释了在高等真核生物中核RNAi对基因组稳定性的广泛调控。

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