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对Rad3和Chk1蛋白激酶的分析确定了不同的检查点反应。

Analysis of Rad3 and Chk1 protein kinases defines different checkpoint responses.

作者信息

Martinho R G, Lindsay H D, Flaggs G, DeMaggio A J, Hoekstra M F, Carr A M, Bentley N J

机构信息

MRC Cell Mutation Unit, University of Sussex, Falmer, Brighton, East Sussex, BN1 9RR, UK.

出版信息

EMBO J. 1998 Dec 15;17(24):7239-49. doi: 10.1093/emboj/17.24.7239.

Abstract

UNLABELLED

Eukaryotic cells respond to DNA damage and S phase replication blocks by arresting cell-cycle progression through the DNA structure checkpoint pathways. In Schizosaccharomyces pombe, the Chk1 kinase is essential for mitotic arrest and is phosphorylated after DNA damage. During S phase, the Cds1 kinase is activated in response to DNA damage and DNA replication blocks. The response of both Chk1 and Cds1 requires the six 'checkpoint Rad' proteins (Rad1, Rad3, Rad9, Rad17, Rad26 and Hus1). We demonstrate that DNA damage-dependent phosphorylation of Chk1 is also cell-cycle specific, occurring primarily in late S phase and G2, but not during M/G1 or early S phase. We have also isolated and characterized a temperature-sensitive allele of rad3. Rad3 functions differently depending on which checkpoint pathway is activated. Following DNA damage, rad3 is required to initiate but not maintain the Chk1 response. When DNA replication is inhibited, rad3 is required for both initiation and maintenance of the Cds1 response. We have identified a strong genetic interaction between rad3 and cds1, and biochemical evidence shows a physical interaction is possible between Rad3 and Cds1, and between Rad3 and Chk1 in vitro. Together, our results highlight the cell-cycle specificity of the DNA structure-dependent checkpoint response and identify distinct roles for Rad3 in the different checkpoint responses.

KEYWORDS

ATM/ATR/cell-cycle checkpoints/Chk1/Rad3

摘要

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真核细胞通过DNA结构检查点途径阻止细胞周期进程,以响应DNA损伤和S期复制阻滞。在粟酒裂殖酵母中,Chk1激酶对于有丝分裂阻滞至关重要,并且在DNA损伤后会发生磷酸化。在S期,Cds1激酶会响应DNA损伤和DNA复制阻滞而被激活。Chk1和Cds1的响应都需要六种“检查点Rad”蛋白(Rad1、Rad3、Rad9、Rad17、Rad26和Hus1)。我们证明,Chk1的DNA损伤依赖性磷酸化也是细胞周期特异性的,主要发生在S期末期和G2期,而不是在M/G1期或S期早期。我们还分离并鉴定了rad3的一个温度敏感等位基因。Rad3的功能取决于激活的是哪种检查点途径。DNA损伤后,启动Chk1响应需要rad3,但维持该响应则不需要。当DNA复制受到抑制时,启动和维持Cds1响应都需要rad3。我们发现rad3和cds1之间存在很强的遗传相互作用,并且生化证据表明,在体外Rad3与Cds1之间以及Rad3与Chk1之间可能存在物理相互作用。总之,我们的结果突出了DNA结构依赖性检查点响应的细胞周期特异性,并确定了Rad3在不同检查点响应中的不同作用。

关键词

ATM/ATR/细胞周期检查点/Chk1/Rad3

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