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果蝇mus301/纺锤体-C编码一种解旋酶,在双链DNA断裂修复和减数分裂进程中起关键作用。

Drosophila mus301/spindle-C encodes a helicase with an essential role in double-strand DNA break repair and meiotic progression.

作者信息

McCaffrey Ruth, St Johnston Daniel, González-Reyes Acaimo

机构信息

MRC Laboratory of Molecular Biology, The Gurdon Institute and Department of Genetics, University of Cambridge, Cambridge CB2 1QR, United Kingdom.

出版信息

Genetics. 2006 Nov;174(3):1273-85. doi: 10.1534/genetics.106.058289. Epub 2006 Aug 3.

Abstract

mus301 was identified independently in two genetic screens, one for mutants hypersensitive to chemical mutagens and another for maternal mutants with eggshell defects. mus301 is required for the proper specification of the oocyte and for progression through meiosis in the Drosophila ovary. We have cloned mus301 and show that it is a member of the Mus308 subfamily of ATP-dependent helicases and the closest homolog of human and mouse HEL308. Functional analyses demonstrate that Mus301 is involved in chromosome segregation in meiosis and in the repair of double-strand-DNA breaks in both meiotic and mitotic cells. Most of the oogenesis defects of mus301 mutants are suppressed by mutants in the checkpoint kinase Mei41 and in MeiW68, the Spo11 homolog that is thought to generate the dsDNA breaks that initiate recombination, indicating that these phenotypes are caused by activation of the DNA damage checkpoint in response to unrepaired Mei-W68-induced dsDNA breaks. However, neither mei-W68 nor mei-41 rescue the defects in oocyte specification of mus301 mutants, suggesting that this helicase has another function in oocyte selection that is independent from its role in meiotic recombination.

摘要

mus301是在两项遗传筛选中独立鉴定出来的,一项是针对对化学诱变剂敏感的突变体,另一项是针对具有卵壳缺陷的母体突变体。在果蝇卵巢中,mus301对于卵母细胞的正确特化以及减数分裂的进行是必需的。我们已经克隆了mus301,并表明它是ATP依赖性解旋酶Mus308亚家族的成员,也是人类和小鼠HEL308的最接近同源物。功能分析表明,Mus301参与减数分裂中的染色体分离以及减数分裂和有丝分裂细胞中双链DNA断裂的修复。mus301突变体的大多数卵子发生缺陷被检查点激酶Mei41和MeiW68(被认为产生引发重组的双链DNA断裂的Spo11同源物)中的突变体所抑制,这表明这些表型是由DNA损伤检查点响应未修复的Mei-W68诱导的双链DNA断裂而激活所导致的。然而,mei-W68和mei-41都不能挽救mus301突变体在卵母细胞特化方面的缺陷,这表明这种解旋酶在卵母细胞选择中具有另一种独立于其在减数分裂重组中作用的功能。

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