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Abnormality in Initiation Program of DNA Replication Is Monitored by the Highly Repetitive rRNA Gene Array on Chromosome XII in Budding Yeast▿ †

机译:DNA复制起始程序中的异常是通过酵母中XII染色体上高度重复的rRNA基因阵列来监测的。

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摘要

We have shown previously that perturbation of origin firing in chromosome replication causes DNA lesions and triggers DNA damage checkpoint control, which ensures genomic integrity by stopping cell cycle progression until the lesions are repaired or by inducing cell death if they are not properly repaired. This was based on the observation that the temperature-sensitive phenotype of orc1-4 and orc2-1 mutants required a programmed action of the RAD9-dependent DNA damage checkpoint. Here, we report that DNA lesions in the orc mutants are induced much more quickly and frequently within the rRNA gene (rDNA) locus than at other chromosomal loci upon temperature shift. orc mutant cells with greatly reduced rDNA copy numbers regained the ability to grow at restrictive temperatures, and the checkpoint response after the temperature shift became weak in these cells. In orc2-1 cells, completion of chromosomal duplication was delayed specifically on chromosome XII, where the rDNA array is located, and the delay was partially suppressed when the rDNA copy number was reduced. These results suggest that the rDNA locus primarily signals abnormalities in the initiation program to the DNA damage checkpoint and that the rDNA copy number modulates the sensitivity of this monitoring function.
机译:先前我们已经证明,染色体复制中起源激发的扰动会引起DNA损伤并触发DNA损伤检查点控制,这可以通过停止细胞周期进程直至修复好病灶或通过如果修复不当而引起细胞死亡来确保基因组完整性。这是基于以下观察结果:orc1-4和orc2-1突变体的温度敏感表型需要RAD9依赖性DNA损伤检查点的程序化作用。在这里,我们报道在温度变化后,在rRNA基因(rDNA)位点内,orc突变体中的DNA损伤要比在其他染色体基因座上更快,更频繁地被诱导。 rDNA拷贝数大大减少的orc突变细胞恢复了在限制性温度下生长的能力,并且温度漂移后这些细胞中的检查点响应变弱。在orc2-1细胞中,特别是在rDNA阵列所在的XII染色体上,染色体复制的完成被延迟,并且当rDNA拷贝数减少时,这种延迟被部分抑制。这些结果表明,rDNA基因座主要将启动程序中的异常信号传达给DNA损伤检查点,并且rDNA拷贝数调节了该监测功能的敏感性。

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