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酿酒酵母RAD27在损伤修复中可互补其大肠杆菌同源物,但在避免突变方面则不然。

Saccharomyces cerevisiae RAD27 complements its Escherichia coli homolog in damage repair but not mutation avoidance.

作者信息

Ohnishi Gaku, Daigaku Yasukazu, Nagata Yuki, Ihara Makoto, Yamamoto Kazuo

机构信息

Graduate School of Life Sciences, Tohoku University, Sendai, Japan.

出版信息

Genes Genet Syst. 2004 Jun;79(3):183-7. doi: 10.1266/ggs.79.183.

DOI:10.1266/ggs.79.183
PMID:15329499
Abstract

In eukaryotes, the flap endonuclease of Rad27/Fen-1 is thought to play a critical role in lagging-strand DNA replication by removing ribonucleotides present at the 5' ends of Okazaki fragments, and in base excision repair by cleaving a 5' flap structure that may result during base excision repair. Saccharomyces cerevisiae rad27Delta mutants further display a repeat tract instability phenotype and a high rate of forward mutations to canavanine resistance that result from duplications of DNA sequence, indicating a role in mutation avoidance. Two conserved motifs in Rad27/Fen-1 show homology to the 5' --> 3' exonuclease domain of Escherichia coli DNA polymerase I. The strain defective in the 5' --> 3' exonuclease domain in DNA polymerase I shows essentially the same phenotype as the yeast rad27Delta strain. In this study, we expressed the yeast RAD27 gene in an E. coli strain lacking the 5' --> 3' exonuclease domain in DNA polymerase I in order to test whether eukaryotic RAD27/FEN-1 can complement the defect of its bacterial homolog. We found that the yeast Rad27 protein complements sensitivity to methyl methanesulfonate in an E. coli mutant. On the other hand, Rad27 protein did not reduce the high rate of spontaneous mutagenesis in the E. coli tonB gene which results from duplication of DNA. These results indicate that the yeast Rad27 and E. coli 5' --> 3' exonuclease act on the same substrate. We argue that the lack of mutation avoidance of yeast RAD27 in E. coli results from a lack of interaction between the yeast Rad27 protein and the E. coli replication clamp (beta-clamp).

摘要

在真核生物中,Rad27/Fen-1的瓣状核酸内切酶被认为在滞后链DNA复制中发挥关键作用,它可去除冈崎片段5'端存在的核糖核苷酸;在碱基切除修复中,它通过切割碱基切除修复过程中可能产生的5'瓣状结构发挥作用。酿酒酵母rad27Δ突变体进一步表现出重复序列不稳定表型以及对刀豆氨酸抗性的高频率正向突变,这些突变是由DNA序列重复导致的,表明其在避免突变方面发挥作用。Rad27/Fen-1中的两个保守基序与大肠杆菌DNA聚合酶I的5'→3'核酸外切酶结构域具有同源性。DNA聚合酶I中5'→3'核酸外切酶结构域有缺陷的菌株表现出与酵母rad27Δ菌株基本相同的表型。在本研究中,我们在缺乏DNA聚合酶I中5'→3'核酸外切酶结构域的大肠杆菌菌株中表达酵母RAD27基因,以测试真核生物RAD27/FEN-1是否能弥补其细菌同源物的缺陷。我们发现酵母Rad27蛋白可弥补大肠杆菌突变体对甲磺酸甲酯的敏感性。另一方面,Rad27蛋白并未降低大肠杆菌tonB基因中由DNA重复导致的高自发突变率。这些结果表明酵母Rad27和大肠杆菌5'→3'核酸外切酶作用于相同的底物。我们认为酵母RAD27在大肠杆菌中缺乏避免突变的能力是由于酵母Rad27蛋白与大肠杆菌复制钳(β-钳)之间缺乏相互作用。

相似文献

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Saccharomyces cerevisiae RAD27 complements its Escherichia coli homolog in damage repair but not mutation avoidance.酿酒酵母RAD27在损伤修复中可互补其大肠杆菌同源物,但在避免突变方面则不然。
Genes Genet Syst. 2004 Jun;79(3):183-7. doi: 10.1266/ggs.79.183.
2
Identification of rad27 mutations that confer differential defects in mutation avoidance, repeat tract instability, and flap cleavage.鉴定在避免突变、重复序列不稳定和瓣状结构切割方面具有不同缺陷的rad27突变。
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Suppression of Saccharomyces cerevisiae rad27 null mutant phenotypes by the 5' nuclease domain of Escherichia coli DNA polymerase I.大肠杆菌DNA聚合酶I的5'核酸酶结构域对酿酒酵母rad27缺失突变体表型的抑制作用。
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C-terminal flap endonuclease (rad27) mutations: lethal interactions with a DNA ligase I mutation (cdc9-p) and suppression by proliferating cell nuclear antigen (POL30) in Saccharomyces cerevisiae.C 末端瓣状内切核酸酶(rad27)突变:与 DNA 连接酶 I 突变(cdc9-p)的致死相互作用和增殖细胞核抗原(POL30)在酿酒酵母中的抑制作用。
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Functional analysis of human FEN1 in Saccharomyces cerevisiae and its role in genome stability.人FEN1在酿酒酵母中的功能分析及其在基因组稳定性中的作用。
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The 3'-->5' exonuclease of DNA polymerase delta can substitute for the 5' flap endonuclease Rad27/Fen1 in processing Okazaki fragments and preventing genome instability.DNA聚合酶δ的3'→5'核酸外切酶可替代5'翼端内切核酸酶Rad27/Fen1处理冈崎片段并防止基因组不稳定。
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Activation of Dun1 in response to nuclear DNA instability accounts for the increase in mitochondrial point mutations in Rad27/FEN1 deficient S. cerevisiae.响应核DNA不稳定性而激活的Dun1导致了Rad27/FEN1缺陷型酿酒酵母中线粒体点突变的增加。
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引用本文的文献

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YNK1, the yeast homolog of human metastasis suppressor NM23, is required for repair of UV radiation- and etoposide-induced DNA damage.YNK1是人类转移抑制因子NM23的酵母同源物,是紫外线辐射和依托泊苷诱导的DNA损伤修复所必需的。
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