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小鼠Rad54影响DNA构象以及DNA损伤诱导的Rad51焦点形成。

Mouse Rad54 affects DNA conformation and DNA-damage-induced Rad51 foci formation.

作者信息

Tan T L, Essers J, Citterio E, Swagemakers S M, de Wit J, Benson F E, Hoeijmakers J H, Kanaar R

机构信息

Department of Cell Biology and Genetics, Erasmus University, Rotterdam, PO Box 1738, 3000 DR Rotterdam, The Netherlands.

出版信息

Curr Biol. 1999 Mar 25;9(6):325-8. doi: 10.1016/s0960-9822(99)80142-0.

Abstract

Error-free repair by homologous recombination of DNA double-strand breaks induced by ionizing radiation (IR) requires the Rad52 group proteins, including Rad51 and Rad54, in the yeast Saccharomyces cerevisiae [1]. The formation of a 'joint' molecule between the damaged DNA and the homologous repair template is a key step in recombination mediated by Rad51 and stimulated by Rad54 [2] [3] [4] [5]. Mammalian homologs of Rad51 and Rad54 have been identified [2] [3] [6]. Here, we demonstrate that mouse Rad54 (mRad54) formed IR-induced nuclear foci that colocalized with mRad51. Interaction between mRad51 and mRad54 was induced by genotoxic stress, but only when lesions that required mRad54 for their repair were formed. Interestingly, mRad54 was essential for the formation of IR-induced mRad51 foci. Rad54 belongs to the SWI2/SNF2 protein family, members of which modulate protein-DNA interactions in an ATP-driven manner [7]. Results of a topological assay suggested that purified human Rad54 (hRad54) protein can unwind double-stranded (ds) DNA at the expense of ATP hydrolysis. Unwinding of the homologous repair template could promote the formation or stabilization of hRad51-mediated joint molecules. Rad54 appears to be required downstream of other Rad52 group proteins, such as Rad52 and the Rad55-Rad57 heterodimer, that assist Rad51 in interacting with the broken DNA [2] [3] [4].

摘要

在酿酒酵母中,通过电离辐射(IR)诱导的DNA双链断裂进行无差错修复需要Rad52组蛋白,包括Rad51和Rad54 [1]。受损DNA与同源修复模板之间形成“接头”分子是由Rad51介导并受Rad54刺激的重组中的关键步骤[2][3][4][5]。已鉴定出Rad51和Rad54的哺乳动物同源物[2][3][6]。在这里,我们证明小鼠Rad54(mRad54)形成了与mRad51共定位的IR诱导的核灶。mRad51和mRad54之间的相互作用是由基因毒性应激诱导的,但仅在形成需要mRad54进行修复的损伤时才会发生。有趣的是,mRad54对于IR诱导的mRad51灶的形成至关重要。Rad54属于SWI2/SNF2蛋白家族,其成员以ATP驱动的方式调节蛋白质-DNA相互作用[7]。拓扑分析结果表明,纯化的人Rad54(hRad54)蛋白可以以ATP水解为代价解开双链(ds)DNA。同源修复模板的解旋可以促进hRad51介导的接头分子的形成或稳定。Rad54似乎在其他Rad52组蛋白(如Rad52和Rad55-Rad57异二聚体)下游发挥作用,这些蛋白协助Rad51与断裂的DNA相互作用[2][3][4]。

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