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The Role of Replication-Associated Repair Factors on R-Loops

机译:复制相关的修复因子在R循环上的作用

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摘要

The nascent RNA can reinvade the DNA double helix to form a structure termed the R-loop, where a single-stranded DNA (ssDNA) is accompanied by a DNA-RNA hybrid. Unresolved R-loops can impede transcription and replication processes and lead to genomic instability by a mechanism still not fully understood. In this sense, a connection between R-loops and certain chromatin markers has been reported that might play a key role in R-loop homeostasis and genome instability. To counteract the potential harmful effect of R-loops, different conserved messenger ribonucleoprotein (mRNP) biogenesis and nuclear export factors prevent R-loop formation, while ubiquitously-expressed specific ribonucleases and DNA-RNA helicases resolve DNA-RNA hybrids. However, the molecular events associated with R-loop sensing and processing are not yet known. Given that R-loops hinder replication progression, it is plausible that some DNA replication-associated factors contribute to dissolve R-loops or prevent R-loop mediated genome instability. In support of this, R-loops accumulate in cells depleted of the BRCA1, BRCA2 or the Fanconi anemia (FA) DNA repair factors, indicating that they play an active role in R-loop dissolution. In light of these results, we review our current view of the role of replication-associated DNA repair pathways in preventing the harmful consequences of R-loops.
机译:新生的RNA可以侵入DNA双螺旋结构,形成一个称为R环的结构,其中单链DNA(ssDNA)伴随着DNA-RNA杂种。未解决的R环可能会阻止转录和复制过程,并通过尚未完全了解的机制导致基因组不稳定。从这个意义上说,已经报道了R环与某些染色质标记之间的联系,这可能在R环稳态和基因组不稳定中起关键作用。为了抵消R环的潜在有害作用,不同的保守信使核糖核蛋白(mRNP)生物发生和核输出因子可防止R环的形成,而无处不在的特定核糖核酸酶和DNA-RNA解旋酶可分辨DNA-RNA杂种。然而,与R-环感测和处理有关的分子事件尚不清楚。考虑到R环阻碍复制进程,某些与DNA复制相关的因子有助于溶解R环或防止R环介导的基因组不稳定是合理的。为此,R环会在耗尽BRCA1,BRCA2或Fanconi贫血(FA)DNA修复因子的细胞中积聚,表明它们在R环溶解中起积极作用。根据这些结果,我们回顾了复制相关的DNA修复途径在预防R环的有害后果中的作用的当前观点。

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