Halbrook J, Hoekstra M F
ICOS Corporation, Bothell, Washington 98021.
Mol Cell Biol. 1994 Dec;14(12):8037-50. doi: 10.1128/mcb.14.12.8037-8050.1994.
To isolate Saccharomyces cerevisiae mutants defective in recombinational DNA repair, we constructed a strain that contains duplicated ura3 alleles that flank LEU2 and ADE5 genes at the ura3 locus on chromosome V. When a HO endonuclease cleavage site is located within one of the ura3 alleles, Ura+ recombination is increased over 100-fold in wild-type strains following HO induction from the GAL1, 10 promoter. This strain was used to screen for mutants that exhibited reduced levels of HO-induced intrachromosomal recombination without significantly affecting the spontaneous frequency of Ura+ recombination. One of the mutations isolated through this screen was found to affect the essential gene CDC1. This mutation, cdc1-100, completely eliminated HO-induced Ura+ recombination yet maintained both spontaneous preinduced recombination levels and cell viability, cdc1-100 mutants were moderately sensitive to killing by methyl methanesulfonate and gamma irradiation. The effect of the cdc1-100 mutation on recombinational double-strand break repair indicates that a recombinationally silent mechanism other than sister chromatid exchange was responsible for the efficient repair of DNA double-strand breaks.
为了分离在重组DNA修复方面存在缺陷的酿酒酵母突变体,我们构建了一个菌株,该菌株在第五条染色体的ura3位点含有位于LEU2和ADE5基因两侧的重复ura3等位基因。当HO内切核酸酶切割位点位于其中一个ura3等位基因内时,在从GAL1,10启动子诱导HO后,野生型菌株中的Ura +重组增加了100倍以上。该菌株用于筛选HO诱导的染色体内重组水平降低但不显著影响Ura +重组自发频率的突变体。通过该筛选分离出的一个突变被发现影响必需基因CDC1。这个突变体cdc1-100完全消除了HO诱导的Ura +重组,但保持了自发诱导前的重组水平和细胞活力,cdc1-100突变体对甲磺酸甲酯和γ射线杀伤有中度敏感性。cdc1-100突变对重组双链断裂修复的影响表明,除姐妹染色单体交换外的一种重组沉默机制负责DNA双链断裂的有效修复。