Schiestl R H, Reynolds P, Prakash S, Prakash L
Department of Biology, University of Rochester, River Campus Station, New York 14627.
Mol Cell Biol. 1989 May;9(5):1882-96. doi: 10.1128/mcb.9.5.1882-1896.1989.
Procaryotic and eucaryotic cells possess mechanisms for arresting cell division in response to DNA damage. Eucaryotic cells arrest division in the G2 stage of the cell cycle, and various observations suggest that this arrest is necessary to ensure the completion of repair of damaged DNA before the entry of cells into mitosis. Here, we provide evidence that the Saccharomyces cerevisiae RAD9 gene, mutations of which confer sensitivity to DNA-damaging agents, is necessary for the cell cycle arrest phenomenon. Our studies with the rad9 delta mutation show that RAD9 plays a role in the cell cycle arrest of methyl methanesulfonate-treated cells and is absolutely required for the cell cycle arrest in the temperature-sensitive cdc9 mutant, which is defective in DNA ligase. At the restrictive temperature, cell cycle progression of cdc9 cells is blocked sometime after the DNA chain elongation step, whereas cdc9 rad9 delta cells do not arrest at this point and undergo one or two additional divisions. Upon transfer from the restrictive to the permissive temperature, a larger proportion of the cdc9 cells than of the cdc9 rad9 delta cells forms viable colonies, indicating that RAD9-mediated cell cycle arrest allows for proper ligation of DNA breaks before the entry of cells into mitosis. The rad9 delta mutation does not affect the frequency of spontaneous or UV-induced mutation and recombination, suggesting that RAD9 is not directly involved in mutagenic or recombinational repair processes. The RAD9 gene encodes a transcript of approximately 4.2 kilobases and a protein of 1,309 amino acids of Mr 148,412. We suggest that RAD9 may be involved in regulating the expression of genes required for the transition from G2 to mitosis.
原核细胞和真核细胞拥有响应DNA损伤而阻止细胞分裂的机制。真核细胞在细胞周期的G2期阻止分裂,各种观察结果表明,这种阻止对于确保受损DNA在细胞进入有丝分裂之前完成修复是必要的。在此,我们提供证据表明,酿酒酵母RAD9基因(其突变会导致对DNA损伤剂敏感)对于细胞周期阻止现象是必需的。我们对rad9δ突变的研究表明,RAD9在甲磺酸甲酯处理的细胞的细胞周期阻止中起作用,并且对于DNA连接酶有缺陷的温度敏感型cdc9突变体的细胞周期阻止是绝对必需的。在限制温度下,cdc9细胞的细胞周期进程在DNA链延伸步骤之后的某个时间被阻断,而cdc9 rad9δ细胞此时不会阻止,而是会进行一到两次额外的分裂。从限制温度转移到允许温度后,cdc9细胞形成活菌落的比例比cdc9 rad9δ细胞的比例更大,这表明RAD9介导的细胞周期阻止允许在细胞进入有丝分裂之前对DNA断裂进行适当的连接。rad9δ突变不影响自发或紫外线诱导的突变和重组频率,这表明RAD9不直接参与诱变或重组修复过程。RAD9基因编码一个约4.2千碱基的转录本和一个由1309个氨基酸组成、分子量为148,412的蛋白质。我们认为RAD9可能参与调节从G2期到有丝分裂所需基因的表达。