Parenteau J, Wellinger R J
Département de Microbiologie et Infectiologie, Faculté de Médecine, Université de Sherbrooke, Sherbrooke, Quebec, J1H 5N4, Canada.
Mol Cell Biol. 1999 Jun;19(6):4143-52. doi: 10.1128/MCB.19.6.4143.
The Saccharomyces cerevisiae RAD27 gene encodes the yeast homologue of the mammalian FEN-1 nuclease, a protein that is thought to be involved in the processing of Okazaki fragments during DNA lagging-strand synthesis. One of the predicted DNA lesions occurring in rad27 strains is the presence of single-stranded DNA of the template strand for lagging-strand synthesis. We examined this prediction by analyzing the terminal DNA structures generated during telomere replication in rad27 strains. The lengths of the telomeric repeat tracts were found to be destabilized in rad27 strains, indicating that naturally occurring direct repeats are subject to tract expansions and contractions in such strains. Furthermore, abnormally high levels of single-stranded DNA of the templating strand for lagging-strand synthesis were observed in rad27 cells. Overexpression of Dna2p in wild-type cells also yielded single-stranded DNA regions on telomeric DNA and caused a cell growth arrest phenotype virtually identical to that seen for rad27 cells grown at the restrictive temperature. Furthermore, overexpression of the yeast exonuclease Exo1p alleviated the growth arrest induced by both conditions, overexpression of Dna2p and incubation of rad27 cells at 37 degrees C. However, the telomere heterogeneity and the appearance of single-stranded DNA are not prevented by the overexpression of Exo1p in these strains, suggesting that this nuclease is not simply redundant with Rad27p. Our data thus provide in vivo evidence for the types of DNA lesions predicted to occur when lagging-strand synthesis is deficient and suggest that Dna2p and Rad27p collaborate in the processing of Okazaki fragments.
酿酒酵母RAD27基因编码哺乳动物FEN - 1核酸酶的酵母同源物,该蛋白被认为在DNA滞后链合成过程中参与冈崎片段的加工。rad27菌株中预测会出现的一种DNA损伤是滞后链合成模板链单链DNA的存在。我们通过分析rad27菌株端粒复制过程中产生的末端DNA结构来检验这一预测。发现rad27菌株中端粒重复序列的长度不稳定,表明在这类菌株中天然存在的直接重复序列会发生序列扩增和收缩。此外,在rad27细胞中观察到滞后链合成模板链的单链DNA水平异常高。在野生型细胞中过表达Dna2p也会在端粒DNA上产生单链DNA区域,并导致细胞生长停滞表型,这与在限制温度下生长的rad27细胞的表型几乎相同。此外,酵母核酸外切酶Exo1p的过表达缓解了由Dna2p过表达和rad27细胞在37℃孵育这两种情况所诱导的生长停滞。然而,在这些菌株中过表达Exo1p并不能防止端粒异质性和单链DNA的出现,这表明这种核酸酶与Rad27p并非简单的冗余。因此,我们的数据为滞后链合成缺陷时预测会出现的DNA损伤类型提供了体内证据,并表明Dna2p和Rad27p在冈崎片段的加工过程中协同作用。