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Report Sen1 Is Recruited to Replication Forks via Ctf4 and Mrc1 and Promotes Genome Stability

机译:报告SEN1通过CTF4和MRC1招募到Replication Forks并促进基因组稳定性

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DNA replication and RNA transcription compete for the same substrate during S phase. Cells have evolved several mechanisms to minimize such conflicts. Here, we identify the mechanism by which the transcription termination helicase Sen1 associates with replisomes. We show that the N terminus of Sen1 is both sufficient and necessary for replisome association and that it binds to the replisome via the components Ctf4 and Mrc1. We generated a separation of function mutant, sen1-3 , which abolishes replisome binding without affecting transcription termination. We observe that the sen1-3 mutants show increased genome instability and recombination levels. Moreover, sen1-3 is synthetically defective with mutations in genes involved in RNA metabolism and the S phase checkpoint. RNH1 overexpression suppresses defects in the former, but not the latter. These findings illustrate how Sen1 plays a key function at replication forks during DNA replication to promote fork progression and chromosome stability.
机译:在S期间,DNA复制和RNA转录在相同的基材上竞争。细胞已经进化了几种机制以最大限度地减少这种冲突。在这里,我们鉴定了转录终止螺旋酶SEN1与重复的机制。我们表明SEN1的N末端既足够,需要对普罗基组合的必要条件,并且它通过组分CTF4和MRC1与重新键合。我们产生了函数突变体的分离,Sen1-3,其消除了重写的结合而不会影响转录终止。我们观察到SEN1-3突变体显示出增加的基因组不稳定性和重组水平。此外,SEN1-3在综合性缺陷缺陷RNA代谢和S相检查点中的基因突变。 RNH1过度表达抑制了前者的缺陷,但不是后者。这些发现说明了SEN1在DNA复制期间如何在复制叉中发挥关键功能,以促进叉进展和染色体稳定性。

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