Grenetier Sabrina, Bouchoux Céline, Goguel Valérie
Service de Biochimie et de Génétique Moléculaire, CEA/Saclay, 91191 Gif/Yvette, France.
Nucleic Acids Res. 2006;34(17):4996-5006. doi: 10.1093/nar/gkl493. Epub 2006 Sep 19.
The genomic stability of the rDNA tandem array is tightly controlled to allow sequence homogenization and to prevent deleterious rearrangements. In this report, we show that the absence of the yeast CTD kinase I (CTDK-I) complex in null mutant strains leads to a decrease in the number of tandem rDNA repeats. Reintroduction of the missing gene induces an increase of rDNA repeats to reach a copy number similar to that of the original strain. Interestingly, while expansion is dependent on Fob1, a protein required for replication fork blocking activity in rDNA, contraction occurs in the absence of Fob1. Furthermore, silencing of class II genes at the rDNA, a process connected to rDNA stability, is not affected. Ctk1, the kinase subunit of the CTDK-I complex is involved in various steps of mRNA synthesis. In addition, we have recently shown that Ctk1 is also implicated in rRNA synthesis. The results suggest that the RNA polymerase I transcription defect occurring in a ctk1 mutant strain causes rDNA contraction.
核糖体DNA串联阵列的基因组稳定性受到严格控制,以实现序列同质化并防止有害的重排。在本报告中,我们表明,无效突变菌株中酵母CTD激酶I(CTDK-I)复合物的缺失导致串联核糖体DNA重复序列数量减少。重新引入缺失的基因会诱导核糖体DNA重复序列增加,使其拷贝数达到与原始菌株相似的水平。有趣的是,虽然扩增依赖于Fob1(核糖体DNA中复制叉阻断活性所需的一种蛋白质),但收缩在没有Fob1的情况下发生。此外,核糖体DNA上II类基因的沉默(这一过程与核糖体DNA稳定性相关)不受影响。Ctk1是CTDK-I复合物的激酶亚基,参与mRNA合成的各个步骤。此外,我们最近还表明,Ctk1也与rRNA合成有关。结果表明,ctk1突变菌株中发生的RNA聚合酶I转录缺陷导致核糖体DNA收缩。