首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >The Npl3 hnRNP prevents R-loopmediated transcription-replication conflicts and genome instability
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The Npl3 hnRNP prevents R-loopmediated transcription-replication conflicts and genome instability

机译:Npl3 hnRNP可以防止R环介导的转录复制冲突和基因组不稳定

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摘要

Transcription is a major obstacle for replication fork (RF) progression and a cause of genome instability. Part of this instability is mediated by cotranscriptional R loops, which are believed to increase by suboptimal assembly of the nascent messenger ribonucleoprotein particle (mRNP). However, no clear evidence exists that heterogeneous nuclear RNPs (hnRNPs), the basic mRNP components, prevent R-loop stabilization. Here we show that yeast Npl3, the most abundant RNA-binding hnRNP, prevents R-loop-mediated genome instability. npl3D cells show transcription-dependent and R-loop-dependent hyperrecombination and genome-wide replication obstacles as determined by accumulation of the Rrm3 helicase. Such obstacles preferentially occur at long and highly expressed genes, to which Npl3 is preferentially bound in wild-type cells, and are reduced by RNase H1 overexpression. The resulting replication stress confers hypersensitivity to double-strand break-inducing agents. Therefore, our work demonstrates that mRNP factors are critical for genome integrity and opens the option of using them as therapeutic targets in anti-cancer treatment.
机译:转录是复制叉(RF)进展的主要障碍,也是基因组不稳定的原因。这种不稳定性的部分原因是由共转录的R环介导的,据认为,该环由于新生信使核糖核蛋白颗粒(mRNP)的次优组装而增加。但是,没有明确的证据表明异质核RNP(hnRNPs)是基本的mRNP成分会阻止R环的稳定。在这里,我们显示酵母Npl3,最丰富的RNA结合hnRNP,可以防止R环介导的基因组不稳定。 npl3D细胞显示出转录依赖性和R环依赖性超重组以及全基因组复制障碍,这取决于Rrm3解旋酶的积累。此类障碍优先出现在野生型细胞中优先与Npl3结合的长且高度表达的基因上,并通过RNase H1过表达而减少。所产生的复制压力赋予对双链断裂诱导剂的超敏性。因此,我们的工作证明了mRNP因子对于基因组完整性至关重要,并开启了将其用作抗癌治疗靶点的选择。

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