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Sir2p suppresses recombination of replication forks stalled at the replication fork barrier of ribosomal DNA in Saccharomyces cerevisiae

机译:Sir2p抑制酿酒酵母中停滞在核糖体DNA复制叉屏障处的复制叉的重组

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摘要

In the ribosomal DNA (rDNA) of Saccharomyces cerevisiae replication forks progressing against transcription stall at a polar replication fork barrier (RFB) located close to and downstream of the 35S transcription unit. Forks blocked at this barrier are potentially recombinogenic. Plasmids bearing the RFB sequence in its active orientation integrated into the chromosomal rDNA in sir2 mutant cells but not in wild-type cells, indicating that the histone deacetylase silencing protein Sir2 (Sir2p), which also modulates the aging process in yeast, suppresses the recombination competence of forks blocked at the rDNA RFB. Orientation of the RFB sequence in tits inactive course or its abolition by FOB1 deletion avoided plasmid integration in sir2 mutant cells, indicating that stalling of the forks in the plasmid context was required for recombination to take place. Altogether these results strongly suggest that one of the functions of Sir2p is to modulate access of the recombination machinery to the forks stalled at the rDNA RFB.
机译:在酿酒酵母的核糖体DNA(rDNA)中,复制叉在靠近35S转录单位并位于其下游的极性复制叉屏障(RFB)处抵抗转录停滞。被此屏障阻塞的叉可能会重组。具有活性方向的RFB序列的质粒整合到sir2突变细胞中的染色体rDNA中,但未整合到野生型细胞中,这表明组蛋白脱乙酰基酶沉默蛋白Sir2(Sir2p)也可调节酵母的衰老过程,从而抑制了重组叉子的能力在rDNA RFB处受阻。将RFB序列定向在无活性的山雀中或通过FOB1缺失来取消,避免了质粒在sir2突变细胞中的整合,这表明发生重组需要叉在质粒环境中停滞。总而言之,这些结果强烈表明,Sir2p的功能之一是调节重组机器对停滞在rDNA RFB处的叉子的访问。

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