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本文引用的文献

1
Protein kinase activity of Tel1p and Mec1p, two Saccharomyces cerevisiae proteins related to the human ATM protein kinase.Tel1p和Mec1p的蛋白激酶活性,这两种酿酒酵母蛋白与人类ATM蛋白激酶相关。
Proc Natl Acad Sci U S A. 2000 Dec 5;97(25):13749-54. doi: 10.1073/pnas.250475697.
2
LCD1: an essential gene involved in checkpoint control and regulation of the MEC1 signalling pathway in Saccharomyces cerevisiae.LCD1:酿酒酵母中参与MEC1信号通路的检查点控制和调节的必需基因。
EMBO J. 2000 Nov 1;19(21):5801-12. doi: 10.1093/emboj/19.21.5801.
3
Srs2 DNA helicase is involved in checkpoint response and its regulation requires a functional Mec1-dependent pathway and Cdk1 activity.Srs2 DNA解旋酶参与检查点反应,其调控需要功能性的Mec1依赖性途径和Cdk1活性。
EMBO J. 2000 Sep 15;19(18):5027-38. doi: 10.1093/emboj/19.18.5027.
4
The checkpoint protein Ddc2, functionally related to S. pombe Rad26, interacts with Mec1 and is regulated by Mec1-dependent phosphorylation in budding yeast.检查点蛋白Ddc2与粟酒裂殖酵母Rad26功能相关,在芽殖酵母中与Mec1相互作用,并受Mec1依赖性磷酸化调节。
Genes Dev. 2000 Aug 15;14(16):2046-59.
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Checkpoint proteins influence telomeric silencing and length maintenance in budding yeast.检查点蛋白影响芽殖酵母中的端粒沉默和长度维持。
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Functional link of BRCA1 and ataxia telangiectasia gene product in DNA damage response.BRCA1与共济失调毛细血管扩张症基因产物在DNA损伤反应中的功能联系。
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ATM phosphorylation of Nijmegen breakage syndrome protein is required in a DNA damage response.尼氏征候群蛋白的ATM磷酸化在DNA损伤反应中是必需的。
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Functional link between ataxia-telangiectasia and Nijmegen breakage syndrome gene products.共济失调毛细血管扩张症与尼曼-匹克氏病C型基因产物之间的功能联系。
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DNA repair protein Rad55 is a terminal substrate of the DNA damage checkpoints.DNA修复蛋白Rad55是DNA损伤检查点的终末底物。
Mol Cell Biol. 2000 Jun;20(12):4393-404. doi: 10.1128/MCB.20.12.4393-4404.2000.
10
ATM-dependent phosphorylation of nibrin in response to radiation exposure.辐射暴露后,依赖ATM的尼布林磷酸化。
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mec1激酶缺陷型突变体以及损害DNA损伤反应途径亚群的新型mec1次等位基因的特征分析。

Characterization of mec1 kinase-deficient mutants and of new hypomorphic mec1 alleles impairing subsets of the DNA damage response pathway.

作者信息

Paciotti V, Clerici M, Scotti M, Lucchini G, Longhese M P

机构信息

Dipartimento di Biotecnologie e Bioscienze, Università degli Studi di Milano-Bicocca, 20126 Milan, Italy.

出版信息

Mol Cell Biol. 2001 Jun;21(12):3913-25. doi: 10.1128/MCB.21.12.3913-3925.2001.

DOI:10.1128/MCB.21.12.3913-3925.2001
PMID:11359899
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC87054/
Abstract

DNA damage checkpoints lead to the inhibition of cell cycle progression following DNA damage. The Saccharomyces cerevisiae Mec1 checkpoint protein, a phosphatidylinositol kinase-related protein, is required for transient cell cycle arrest in response to DNA damage or DNA replication defects. We show that mec1 kinase-deficient (mec1kd) mutants are indistinguishable from mec1Delta cells, indicating that the Mec1 conserved kinase domain is required for all known Mec1 functions, including cell viability and proper DNA damage response. Mec1kd variants maintain the ability to physically interact with both Ddc2 and wild-type Mec1 and cause dominant checkpoint defects when overproduced in MEC1 cells, impairing the ability of cells to slow down S phase entry and progression after DNA damage in G(1) or during S phase. Conversely, an excess of Mec1kd in MEC1 cells does not abrogate the G(2)/M checkpoint, suggesting that Mec1 functions required for response to aberrant DNA structures during specific cell cycle stages can be separable. In agreement with this hypothesis, we describe two new hypomorphic mec1 mutants that are completely defective in the G(1)/S and intra-S DNA damage checkpoints but properly delay nuclear division after UV irradiation in G(2). The finding that these mutants, although indistinguishable from mec1Delta cells with respect to the ability to replicate a damaged DNA template, do not lose viability after UV light and methyl methanesulfonate treatment suggests that checkpoint impairments do not necessarily result in hypersensitivity to DNA-damaging agents.

摘要

DNA损伤检查点可导致DNA损伤后细胞周期进程的抑制。酿酒酵母的Mec1检查点蛋白是一种与磷脂酰肌醇激酶相关的蛋白,对于响应DNA损伤或DNA复制缺陷而导致的短暂细胞周期停滞是必需的。我们发现,mec1激酶缺陷(mec1kd)突变体与mec1Δ细胞没有区别,这表明Mec1保守的激酶结构域对于所有已知的Mec1功能都是必需的,包括细胞活力和适当的DNA损伤反应。Mec1kd变体保持了与Ddc2和野生型Mec1进行物理相互作用的能力,并且当在MEC1细胞中过量表达时会导致显性检查点缺陷,损害细胞在G1期或S期DNA损伤后减缓S期进入和进程的能力。相反,MEC1细胞中过量的Mec1kd不会消除G2/M检查点,这表明在特定细胞周期阶段对异常DNA结构做出反应所需的Mec1功能可能是可分离的。与这一假设一致,我们描述了两个新的mec1低表达突变体,它们在G1/S和S期内DNA损伤检查点中完全有缺陷,但在G2期紫外线照射后能正常延迟核分裂。这些突变体虽然在复制受损DNA模板的能力方面与mec1Δ细胞没有区别,但在紫外线和甲磺酸甲酯处理后不会丧失活力,这一发现表明检查点损伤不一定会导致对DNA损伤剂的超敏反应。