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酿酒酵母中响应DNA损伤时,S期调控需要RAD9、RAD17和RAD24。

RAD9, RAD17, and RAD24 are required for S phase regulation in Saccharomyces cerevisiae in response to DNA damage.

作者信息

Paulovich A G, Margulies R U, Garvik B M, Hartwell L H

机构信息

Fred Hutchinson Cancer Research Center, Seattle, Washington 98104, USA.

出版信息

Genetics. 1997 Jan;145(1):45-62. doi: 10.1093/genetics/145.1.45.

Abstract

We have previously shown that a checkpoint dependent on MEC1 and RAD53 slows the rate of S phase progression in Saccharomyces cerevisiae in response to alkylation damage. Whereas wild-type cells exhibit a slow S phase in response to damage, mec1-1 and rad53 mutants replicate rapidly in the presence or absence of DNA damage. In this report, we show that other genes (RAD9, RAD17, RAD24) involved in the DNA damage checkpoint pathway also play a role in regulating S phase in response to DNA damage. Furthermore, RAD9, RAD17, and RAD24 fall into two groups with respect to both sensitivity to alkylation and regulation of S phase. We also demonstrate that the more dramatic defect in S phase regulation in the mec1-1 and rad53 mutants is epistatic to a less severe defect seen in rad9 delta, rad 17 delta, and rad24 delta. Furthermore, the triple rad9 delta rad17 delta rad24 delta mutant also has a less severe defect than mec1-1 or rad53 mutants. Finally, we demonstrate the specificity of this phenotype by showing that the DNA repair and/or checkpoint mutants mgt1 delta, mag1 delta, apn1 delta, rev3 delta, rad18 delta, rad16 delta, dun1-delta 100, sad4-1, tel1 delta, rad26 delta, rad51 delta, rad52-1, rad54 delta, rad14 delta, rad1 delta, pol30-46, pol30-52, mad3 delta, pds1 delta/esp2 delta, pms1 delta, mlh1 delta, and msh2 delta are all proficient at S phase regulation, even though some of these mutations confer sensitivity to alkylation.

摘要

我们之前已经表明,一个依赖MEC1和RAD53的检查点会减缓酿酒酵母中S期进程速率,以应对烷基化损伤。野生型细胞在受到损伤时会表现出缓慢的S期,而mec1-1和rad53突变体在有无DNA损伤的情况下都能快速复制。在本报告中,我们表明DNA损伤检查点途径中涉及的其他基因(RAD9、RAD17、RAD24)在响应DNA损伤时也在调节S期方面发挥作用。此外,就对烷基化的敏感性和S期调节而言,RAD9、RAD17和RAD24分为两组。我们还证明,mec1-1和rad53突变体中S期调节方面更显著的缺陷相对于rad9Δ、rad17Δ和rad24Δ中较轻的缺陷是上位性的。此外,三重rad9Δrad17Δrad24Δ突变体的缺陷也比mec1-1或rad53突变体轻。最后,我们通过表明DNA修复和/或检查点突变体mgt1Δ、mag1Δ、apn1Δ、rev3Δ、rad18Δ、rad16Δ、dun1-Δ100、sad4-1、tel1Δ、rad26Δ、rad51Δ、rad52-1、rad54Δ、rad14Δ、rad1Δ、pol30-46、pol30-52、mad3Δ、pds1Δ/esp2Δ、pms1Δ、mlh1Δ和msh2Δ在S期调节方面都正常,证明了这种表型的特异性,尽管其中一些突变使细胞对烷基化敏感。

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