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酵母pip3/mec3突变体在响应DNA损伤时无法延迟进入S期并减缓DNA复制,它们定义了Mec3与DNA引发酶之间的功能联系。

Yeast pip3/mec3 mutants fail to delay entry into S phase and to slow DNA replication in response to DNA damage, and they define a functional link between Mec3 and DNA primase.

作者信息

Longhese M P, Fraschini R, Plevani P, Lucchini G

机构信息

Dipartimento di Genetica e di Biologia dei Micorganismi, Università degli Studi di Milano, Italy.

出版信息

Mol Cell Biol. 1996 Jul;16(7):3235-44. doi: 10.1128/MCB.16.7.3235.

Abstract

The catalytic DNA primase subunit of the DNA polymerase alpha-primase complex is encoded by the essential PRI1 gene in Saccharomyces cerevisiae. To identify factors that functionally interact with yeast DNA primase in living cells, we developed a genetic screen for mutants that are lethal at the permissive temperature in a cold-sensitive pril-2 genetic background. Twenty-four recessive mutations belonging to seven complementation groups were identified. Some mutants showed additional phenotypes, such as increased sensitivity to UV irradiation, methyl methanesulfonate, and hydroxyurea, that were suggestive of defects in DNA repair and/or checkpoint mechanisms. We have cloned and characterized the gene of one complementation group, PIP3, whose product is necessary both for delaying entry into S phase or mitosis when cells are UV irradiated in G1 or G2 phase and for lowering the rate of ongoing DNA synthesis in the presence of methyl methanesulfonate. PIP3 turned out to be the MEC3 gene, previously identified as a component of the G2 DNA damage checkpoint. The finding that Mec3 is also required for the G1- and S-phase DNA damage checkpoints, together with the analysis of genetic interactions between a mec3 null allele and several conditional DNA replication mutations at the permissive temperature, suggests that Mec3 could be part of a mechanism coupling DNA replication with repair of DNA damage, and DNA primase might be involved in this process.

摘要

DNA聚合酶α-引发酶复合体的催化性DNA引发酶亚基由酿酒酵母中的必需基因PRI1编码。为了鉴定在活细胞中与酵母DNA引发酶发生功能相互作用的因子,我们针对在冷敏感的pril-2遗传背景下于允许温度下致死的突变体开展了一项遗传筛选。我们鉴定出了属于7个互补群的24个隐性突变。一些突变体表现出其他表型,如对紫外线照射、甲磺酸甲酯和羟基脲的敏感性增加,这表明其在DNA修复和/或检查点机制方面存在缺陷。我们克隆并表征了一个互补群的基因PIP3,其产物对于细胞在G1期或G2期受到紫外线照射时延迟进入S期或有丝分裂以及在存在甲磺酸甲酯的情况下降低正在进行的DNA合成速率都是必需的。结果表明PIP3就是MEC3基因,该基因先前被鉴定为G2期DNA损伤检查点的一个组分。Mec3对于G1期和S期DNA损伤检查点也是必需的这一发现,连同在允许温度下对mec3无效等位基因与几个条件性DNA复制突变之间的遗传相互作用的分析,表明Mec3可能是一种将DNA复制与DNA损伤修复相偶联的机制的一部分,并且DNA引发酶可能参与了这一过程。

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