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1
Mice heterozygous for mutation in Atm, the gene involved in ataxia-telangiectasia, have heightened susceptibility to cancer.Atm基因发生突变的杂合子小鼠对癌症的易感性增加,Atm基因与共济失调毛细血管扩张症有关。
Nat Genet. 2002 Sep;32(1):185-90. doi: 10.1038/ng958. Epub 2002 Aug 26.
2
The FlyBase database of the Drosophila genome projects and community literature.果蝇基因组计划和社区文献的FlyBase数据库。
Nucleic Acids Res. 2002 Jan 1;30(1):106-8. doi: 10.1093/nar/30.1.106.
3
mei-41 and bub1 block mitosis at two distinct steps in response to incomplete DNA replication in Drosophila embryos.mei-41和bub1在果蝇胚胎中响应不完全DNA复制时,于两个不同步骤阻断有丝分裂。
Curr Biol. 2001 Oct 16;11(20):1595-9. doi: 10.1016/s0960-9822(01)00483-3.
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DNA damage leads to a Cyclin A-dependent delay in metaphase-anaphase transition in the Drosophila gastrula.DNA损伤导致果蝇原肠胚中期-后期转换过程中出现细胞周期蛋白A依赖的延迟。
Curr Biol. 2001 Jan 9;11(1):8-17. doi: 10.1016/s0960-9822(00)00042-7.
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Polo-like kinase-1 is a target of the DNA damage checkpoint.Polo样激酶-1是DNA损伤检查点的一个靶点。
Nat Cell Biol. 2000 Sep;2(9):672-6. doi: 10.1038/35023629.
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Ataxia telangiectasia-mutated phosphorylates Chk2 in vivo and in vitro.共济失调毛细血管扩张症突变基因在体内和体外均能使Chk2磷酸化。
Proc Natl Acad Sci U S A. 2000 Sep 12;97(19):10389-94. doi: 10.1073/pnas.190030497.
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mei-41 is required for precocious anaphase in Drosophila females.mei-41对于果蝇雌性个体的早熟后期是必需的。
Chromosoma. 2000;109(1-2):44-9. doi: 10.1007/s004120050411.
8
Targeted disruption of the cell-cycle checkpoint gene ATR leads to early embryonic lethality in mice.对细胞周期检查点基因ATR进行靶向破坏会导致小鼠早期胚胎致死。
Curr Biol. 2000 Apr 20;10(8):479-82. doi: 10.1016/s0960-9822(00)00447-4.
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FAT: a novel domain in PIK-related kinases.FAT:PIK相关激酶中的一个新结构域。
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10
mus304 encodes a novel DNA damage checkpoint protein required during Drosophila development.mus304编码一种果蝇发育过程中所需的新型DNA损伤检查点蛋白。
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果蝇ATM/ATR蛋白MEI-41功能分离等位基因的表型分析

Phenotypic analysis of separation-of-function alleles of MEI-41, Drosophila ATM/ATR.

作者信息

Laurençon Anne, Purdy Amanda, Sekelsky Jeff, Hawley R Scott, Su Tin Tin

机构信息

Molecular and Cellular Biology Department, University of California, Davis 95616, USA.

出版信息

Genetics. 2003 Jun;164(2):589-601. doi: 10.1093/genetics/164.2.589.

DOI:10.1093/genetics/164.2.589
PMID:12807779
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1462579/
Abstract

ATM/ATR kinases act as signal transducers in eukaryotic DNA damage and replication checkpoints. Mutations in ATM/ATR homologs have pleiotropic effects that range from sterility to increased killing by genotoxins in humans, mice, and Drosophila. Here we report the generation of a null allele of mei-41, Drosophila ATM/ATR homolog, and the use of it to document a semidominant effect on a larval mitotic checkpoint and methyl methanesulfonate (MMS) sensitivity. We also tested the role of mei-41 in a recently characterized checkpoint that delays metaphase/anaphase transition after DNA damage in cellular embryos. We then compare five existing mei-41 alleles to the null with respect to known phenotypes (female sterility, cell cycle checkpoints, and MMS resistance). We find that not all phenotypes are affected equally by each allele, i.e., the functions of MEI-41 in ensuring fertility, cell cycle regulation, and resistance to genotoxins are genetically separable. We propose that MEI-41 acts not in a single rigid signal transduction pathway, but in multiple molecular contexts to carry out its many functions. Sequence analysis identified mutations, which, for most alleles, fall in the poorly characterized region outside the kinase domain; this allowed us to tentatively identify additional functional domains of MEI-41 that could be subjected to future structure-function studies of this key molecule.

摘要

ATM/ATR激酶在真核生物DNA损伤和复制检查点中充当信号转导分子。在人类、小鼠和果蝇中,ATM/ATR同源物的突变具有多效性,范围从不育到对基因毒素的杀伤作用增强。在此,我们报告了果蝇ATM/ATR同源物mei-41无效等位基因的产生,并利用它证明了其对幼虫有丝分裂检查点和甲磺酸甲酯(MMS)敏感性具有半显性效应。我们还测试了mei-41在最近鉴定出的一个检查点中的作用,该检查点在细胞胚胎DNA损伤后延迟中期/后期转换。然后,我们将五个现有的mei-41等位基因与无效等位基因在已知表型(雌性不育、细胞周期检查点和MMS抗性)方面进行比较。我们发现并非所有表型都受到每个等位基因的同等影响,即MEI-41在确保生育力、细胞周期调控和对基因毒素抗性方面的功能在遗传上是可分离的。我们提出MEI-41并非作用于单一严格的信号转导途径,而是在多种分子环境中发挥其多种功能。序列分析鉴定出了突变,对于大多数等位基因而言,这些突变位于激酶结构域之外特征不明的区域;这使我们能够初步鉴定出MEI-41的其他功能结构域,以便对这个关键分子进行未来的结构-功能研究。