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酵母和拟南芥中RAD54样基因的功能保守性。

Functional conservation of the yeast and Arabidopsis RAD54-like genes.

作者信息

Klutstein Michael, Shaked Hezi, Sherman Amir, Avivi-Ragolsky Naomi, Shema Efrat, Zenvirth Drora, Levy Avraham A, Simchen Giora

机构信息

Department of Genetics, The Hebrew University, Jerusalem 91904, Israel.

出版信息

Genetics. 2008 Apr;178(4):2389-97. doi: 10.1534/genetics.108.086777.

Abstract

The Saccharomyces cerevisiae RAD54 gene has critical roles in DNA double-strand break repair, homologous recombination, and gene targeting. Previous results show that the yeast gene enhances gene targeting when expressed in Arabidopsis thaliana. In this work we address the trans-species compatibility of Rad54 functions. We show that overexpression of yeast RAD54 in Arabidopsis enhances DNA damage resistance severalfold. Thus, the yeast gene is active in the Arabidopsis homologous-recombination repair system. Moreover, we have identified an A. thaliana ortholog of yeast RAD54, named AtRAD54. This gene, with close sequence similarity to RAD54, complements methylmethane sulfonate (MMS) sensitivity but not UV sensitivity or gene targeting defects of rad54Delta mutant yeast cells. Overexpression of AtRAD54 in Arabidopsis leads to enhanced resistance to DNA damage. This gene's assignment as a RAD54 ortholog is further supported by the interaction of AtRad54 with AtRad51 and the interactions between alien proteins (i.e., yeast Rad54 with AtRAD51 and yeast Rad51 with AtRad54) in a yeast two-hybrid experiment. These interactions hint at the molecular nature of this interkingdom complementation, although the stronger effect of the yeast Rad54 in plants than AtRad54 in yeast might be explained by an ability of the Rad54 protein to act alone, independently of its interaction with Rad51.

摘要

酿酒酵母RAD54基因在DNA双链断裂修复、同源重组和基因靶向中起关键作用。先前的结果表明,该酵母基因在拟南芥中表达时可增强基因靶向作用。在这项研究中,我们探讨了Rad54功能的跨物种兼容性。我们发现,拟南芥中酵母RAD54的过表达使其抗DNA损伤能力增强了数倍。因此,该酵母基因在拟南芥同源重组修复系统中具有活性。此外,我们鉴定出了酵母RAD54在拟南芥中的直系同源基因,命名为AtRAD54。该基因与RAD54序列相似性高,可弥补甲基磺酸甲酯(MMS)敏感性,但不能弥补rad54Delta突变酵母细胞的紫外线敏感性或基因靶向缺陷。拟南芥中AtRAD54的过表达导致其对DNA损伤的抗性增强。酵母双杂交实验中AtRad54与AtRad51的相互作用以及外源蛋白之间的相互作用(即酵母Rad54与AtRAD51以及酵母Rad51与AtRad54)进一步支持了该基因作为RAD54直系同源基因的认定。这些相互作用暗示了这种跨物种互补的分子本质,尽管酵母Rad54在植物中的作用强于AtRad54在酵母中的作用,这可能是由于Rad54蛋白能够独立于其与Rad51的相互作用单独发挥作用。

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