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首页> 外文期刊>PLoS Genetics >Genome-Wide Analysis of Factors Affecting Transcription Elongation and DNA Repair: A New Role for PAF and Ccr4-Not in Transcription-Coupled Repair
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Genome-Wide Analysis of Factors Affecting Transcription Elongation and DNA Repair: A New Role for PAF and Ccr4-Not in Transcription-Coupled Repair

机译:影响转录伸长率和DNA修复的因素的基因组分析:PAF和CCR4的新作用 - 不转录耦合修复

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RNA polymerases frequently deal with a number of obstacles during transcription elongation that need to be removed for transcription resumption. One important type of hindrance consists of DNA lesions, which are removed by transcription-coupled repair (TC-NER), a specific sub-pathway of nucleotide excision repair. To improve our knowledge of transcription elongation and its coupling to TC-NER, we used the yeast library of non-essential knock-out mutations to screen for genes conferring resistance to the transcription-elongation inhibitor mycophenolic acid and the DNA-damaging agent 4-nitroquinoline-N-oxide. Our data provide evidence that subunits of the SAGA and Ccr4-Not complexes, Mediator, Bre1, Bur2, and Fun12 affect transcription elongation to different extents. Given the dependency of TC-NER on RNA Polymerase II transcription and the fact that the few proteins known to be involved in TC-NER are related to transcription, we performed an in-depth TC-NER analysis of a selection of mutants. We found that mutants of the PAF and Ccr4-Not complexes are impaired in TC-NER. This study provides evidence that PAF and Ccr4-Not are required for efficient TC-NER in yeast, unraveling a novel function for these transcription complexes and opening new perspectives for the understanding of TC-NER and its functional interconnection with transcription elongation.
机译:RNA聚合酶经常在需要除去转录延伸期间处理许多障碍以进行转录恢复。一种重要类型的障碍由DNA病变组成,所述DNA病变由转录偶联的修复(TC-NER)除去,核苷酸切除修复的特定子途径。为了提高我们对TC-ner的转录伸长率及其偶联的知识,我们使用了非必要敲除突变的酵母文库对赋予转录延伸抑制剂霉菌酸和DNA损伤剂4-​​的基因的基因Nitroquinoline-n-氧化物。我们的数据提供了证据表明SAGA和CCR4-NOT复合物,介体,BRE1,BUR2和FIN12的亚基会影响转录伸长率。鉴于TC-NER对RNA聚合酶II转录的依赖性及其已知涉及TC-NER的少数蛋白质与转录有关,我们对选择的突变体进行了深入的TC-NER分析。我们发现PAF和CCR4 - 不复合物的突变体在TC-NER中受到损害。本研究提供了PAF和CCR4 - 不需要在酵母中有效的TC-NER所必需的,解开这些转录复合物的新功能,并开启了解TC-NER的新视角及其与转录伸长率的功能互连。

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