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复制蛋白A与Rad51之间的物理相互作用促进了单链DNA上的交换。

Physical interaction between replication protein A and Rad51 promotes exchange on single-stranded DNA.

作者信息

Stauffer Melissa E, Chazin Walter J

机构信息

Departments of Biochemistry and Physics and the Center for Structural Biology, Vanderbilt University, Nashville, Tennessee 37232-8725, USA.

出版信息

J Biol Chem. 2004 Jun 11;279(24):25638-45. doi: 10.1074/jbc.M400029200. Epub 2004 Mar 31.

Abstract

Replication protein A (RPA) is displaced from single-stranded DNA (ssDNA) by Rad51 during the initiation of homologous recombination. Interactions between these proteins have been reported, but the functional significance of the direct RPA-Rad51 interaction has yet to be elucidated. We have identified and characterized the interaction between DNA-binding domain A of RPA (RPA70A) and the N-terminal domain of Rad51 (Rad51N). NMR chemical shift mapping showed that Rad51N binds to the ssDNA-binding site of RPA70A, suggesting a competitive mechanism for the displacement of RPA from ssDNA by Rad51. A structure of the RPA70A-Rad51N complex was generated by experimentally guided modeling and then used to design mutations that disrupt the binding interface. Functional ATP hydrolysis assays were performed for wild-type Rad51 and a mutant defective in binding RPA. Rates of RPA displacement for the mutant were significantly below those of wild-type Rad51, suggesting that a direct RPA-Rad51 interaction is involved in displacing RPA in the initiation stage of genetic recombination.

摘要

在同源重组起始过程中,复制蛋白A(RPA)在Rad51作用下从单链DNA(ssDNA)上被置换下来。已有报道称这些蛋白质之间存在相互作用,但RPA与Rad51直接相互作用的功能意义尚待阐明。我们已鉴定并表征了RPA的DNA结合结构域A(RPA70A)与Rad51的N端结构域(Rad51N)之间的相互作用。核磁共振化学位移图谱显示,Rad51N与RPA70A的ssDNA结合位点结合,这表明存在一种Rad51将RPA从ssDNA上置换下来的竞争机制。通过实验指导的建模生成了RPA70A-Rad51N复合物的结构,然后用于设计破坏结合界面的突变。对野生型Rad51和结合RPA有缺陷的突变体进行了功能性ATP水解测定。突变体的RPA置换率明显低于野生型Rad51,这表明在基因重组起始阶段,RPA与Rad51的直接相互作用参与了RPA的置换。

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