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用于活裂殖酵母中DNA双链断裂信号传导与修复的核工厂

Nuclear factories for signalling and repairing DNA double strand breaks in living fission yeast.

作者信息

Meister Peter, Poidevin Mickaël, Francesconi Stefania, Tratner Isabelle, Zarzov Patrick, Baldacci Giuseppe

机构信息

Institut Curie-CNRS UMR 2027, Bâtiment 110, Centre Universitaire, 91405 Orsay Cedex, France.

出版信息

Nucleic Acids Res. 2003 Sep 1;31(17):5064-73. doi: 10.1093/nar/gkg719.

Abstract

In mammalian and budding yeast cells treated with genotoxic agents, different proteins implicated in detecting, signalling or repairing DNA lesions form nuclear foci. We studied foci formed by proteins involved in these processes in living fission yeast cells, which is amenable to genetic and molecular analysis. Using fluorescent tags, we analysed subnuclear localisations of the DNA damage checkpoint protein Rad9, of the homologous recombination protein Rad22 and of PCNA, which are implicated in many aspects of DNA metabolism. After inducing double strand breaks (DSBs) with ionising radiations, Rad22, Rad9 and PCNA form a low number of nuclear foci. Rad9 recruitment to foci depends on the presence of Rad1, Hus1 and Rad17, but is independent of downstream checkpoint effectors and of homologous recombination proteins. Likewise, Rad22 and PCNA form foci despite inactive homologous recombination repair and impaired DNA damage checkpoint. Rad22 and Rad9 foci co-localise completely, whereas PCNA co-localises with Rad22 and Rad9 only partially. Foci do not disassemble in cells unable to repair DNA by homologous recombination. Thus, in fission yeast, DSBs are detected by the DNA damage checkpoint and are repaired by homologous recombination at a few spatially confined subnuclear compartments where Rad22, Rad9 and PCNA concentrate independently.

摘要

在用基因毒性试剂处理的哺乳动物细胞和芽殖酵母细胞中,参与检测、信号传导或修复DNA损伤的不同蛋白质会形成核焦点。我们研究了参与这些过程的蛋白质在活裂殖酵母细胞中形成的焦点,裂殖酵母细胞适合进行遗传和分子分析。使用荧光标签,我们分析了DNA损伤检查点蛋白Rad9、同源重组蛋白Rad22和PCNA的亚核定位,这些蛋白参与DNA代谢的许多方面。在用电离辐射诱导双链断裂(DSB)后,Rad22、Rad9和PCNA形成少量核焦点。Rad9募集到焦点取决于Rad1、Hus1和Rad17的存在,但不依赖于下游检查点效应器和同源重组蛋白。同样,尽管同源重组修复无活性且DNA损伤检查点受损,Rad22和PCNA仍会形成焦点。Rad22和Rad9焦点完全共定位,而PCNA仅与Rad22和Rad9部分共定位。在无法通过同源重组修复DNA的细胞中,焦点不会解体。因此,在裂殖酵母中,DSB由DNA损伤检查点检测到,并在Rad22、Rad9和PCNA独立聚集的少数空间受限的亚核区室中通过同源重组进行修复。

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