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首页> 外文期刊>Nucleic Acids Research >Dormant origins and fork protection mechanisms rescue sister forks arrested by transcription
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Dormant origins and fork protection mechanisms rescue sister forks arrested by transcription

机译:休眠起源和叉子保护机制救援叉子被转录逮捕

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摘要

The yeast RNA/DNA helicase Sen1, Senataxin in human, preserves the integrity of replication forks encountering transcription by removing RNA-DNA hybrids. Here we show that, in sen1 mutants, when a replication fork clashes head-on with transcription is arrested and, as a consequence, the progression of the sister fork moving in the opposite direction within the same replicon is also impaired. Therefore, sister forks remain coupled when one of the two forks is arrested by transcription, a fate different from that experienced by forks encountering Double Strand Breaks. We also show that dormant origins of replication are activated to ensure DNA synthesis in the proximity to the forks arrested by transcription. Dormant origin firing is not inhibited by the replication checkpoint, rather dormant origins are fired if they cannot be timely inactivated by passive replication. In sen1 mutants, the Mre11 and Mrc1-Ctf4 complexes protect the forks arrested by transcription from processing mediated by the Exo1 nuclease. Thus, a harmless head-on replication-transcription clash resolution requires the fine-tuning of origin firing and coordination among Sen1, Exo1, Mre11 and Mrc1-Ctf4 complexes.
机译:酵母RNA / DNA Helicase Sen1,人类在人中,通过去除RNA-DNA杂种,保留遇到转录的复制叉的完整性。在这里,我们表明,在SEN1突变体中,当Replication Fork冲突随着转录被捕时,并且因此,炮叉在同一复制品内相反的方向移动的进展也受到损害。因此,当两个叉子被转录被捕时,索引叉子仍然耦合,这是一种与叉子遇到双链断裂的叉子不同的命运。我们还表明,激活了复制的休眠起源,以确保DNA合成通过转录捕获的叉子的邻近。复制检查点不会抑制休眠原因射击,如果由于被动复制不能及时灭活,则触发休眠起源。在SEN1突变体中,MRE11和MRC1-CTF4复合物保护通过通过EXO1核酸酶介导的转录而捕获的叉子。因此,无害的正面复制转录型Clash分辨率需要在SeN1,EXO1,MRE11和MRC1-CTF4复合物中进行初始调整的原始射击和协调。

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