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首页> 外文期刊>Frontiers in Genetics >Replication and transcription on a collision course: eukaryotic regulation mechanisms and implications for DNA stability
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Replication and transcription on a collision course: eukaryotic regulation mechanisms and implications for DNA stability

机译:碰撞过程中的复制和转录:真核生物调控机制及其对DNA稳定性的影响

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DNA replication and transcription are vital cellular processes during which the genetic information is copied into complementary DNA and RNA molecules. Highly complex machineries required for DNA and RNA synthesis compete for the same DNA template, therefore being on a collision course. Unscheduled replication–transcription clashes alter the gene transcription program and generate replication stress, reducing fork speed. Molecular pathways and mechanisms that minimize the conflict between replication and transcription have been extensively characterized in prokaryotic cells and recently identified also in eukaryotes. A pathological outcome of replication–transcription collisions is the formation of stable RNA:DNA hybrids in molecular structures called R-loops. Growing evidence suggests that R-loop accumulation promotes both genetic and epigenetic instability, thus severely affecting genome functionality. In the present review, we summarize the current knowledge related to replication and transcription conflicts in eukaryotes, their consequences on genome stability and the pathways involved in their resolution. These findings are relevant to clarify the molecular basis of cancer and neurodegenerative diseases.
机译:DNA复制和转录是至关重要的细胞过程,在此过程中,遗传信息被复制到互补的DNA和RNA分子中。 DNA和RNA合成所需的高度复杂的机器竞争同一DNA模板,因此处于碰撞过程中。计划外的复制-转录冲突会改变基因转录程序并产生复制压力,从而降低分叉速度。最小化复制和转录之间的冲突的分子途径和机制已在原核细胞中得到广泛表征,最近在真核生物中也得到了鉴定。复制-转录冲突的病理结果是在称为R环的分子结构中形成稳定的RNA:DNA杂种。越来越多的证据表明,R环积累促进遗传和表观遗传的不稳定性,从而严重影响基因组功能。在本综述中,我们总结了与真核生物中复制和转录冲突,其对基因组稳定性的影响以及其解决途径有关的当前知识。这些发现与阐明癌症和神经退行性疾病的分子基础有关。

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