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Escherichia coli RecO protein anneals ssDNA complexed with its cognate ssDNA-binding protein: A common step in genetic recombination

机译:大肠杆菌RecO蛋白使与其同源ssDNA结合蛋白复合的ssDNA退火:基因重组的常见步骤

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We present biochemical evidence for the functional similarity of Escherichia coli RecO protein and bacteriophage T4 UvsY protein to eukaryotic Rad52 protein. Although Rad52 protein is conserved in eukaryotes, no sequence homologue has been found in pro-karyotes or archeabacteria. Rad52 protein has two unique activities: facilitation of replication protein-A (RPA) displacement by Rad51 protein and annealing of RPA-single-stranded DNA (ssDNA) complexes. Both activities require species-specific interaction between Rad52 protein and RPA. Both RecO and UvsY proteins also possess the former property with regard to their cognate ssDNA-binding protein. Here, we report that RecO protein anneals ssDNA that is complexed with only its cognate ssDNA-binding protein, suggesting the involvement of species-specific interactions. Optimal activity for RecO protein occurs after formation of a 1:1 complex with SSB protein. RecR protein, which is known to stimulate RecO protein to facilitate SSB protein displacement by RecA protein, inhibits annealing by RecO protein, suggesting that RecR protein may regulate the choice between the DNA strand invasion versus annealing pathways. In addition, we show that UvsY protein anneals ssDNA; furthermore, ssDNA, which is complexed only with its cognate ssDNA-binding protein, is annealed in the presence of UvsY protein. These results indicate that RecO and possibly UvsY proteins are functional counterparts of Rad52 protein. Based on the conservation of these functions, we propose a modified double-strand break repair model that includes DNA annealing as an important intermediate step.
机译:我们提供了大肠杆菌RecO蛋白和噬菌体T4 UvsY蛋白与真核Rad52蛋白功能相似的生化证据。尽管Rad52蛋白在真核生物中是保守的,但在原核生物或古细菌中未发现序列同源物。 Rad52蛋白具有两个独特的活性:通过Rad51蛋白促进复制蛋白A(RPA)的置换和RPA单链DNA(ssDNA)复合物的退火。两种活动都需要Rad52蛋白和RPA之间的物种特异性相互作用。 RecO和UvsY蛋白在同源ssDNA结合蛋白方面也都具有前者的特性。在这里,我们报告说RecO蛋白使仅与其同源的ssDNA结合蛋白复合的ssDNA退火,这表明物种特异性相互作用的参与。与SSB蛋白形成1:1的复合物后,RecO蛋白具有最佳活性。 RecR蛋白已知可刺激RecO蛋白以促进RecA蛋白置换SSB蛋白,但可抑制RecO蛋白退火,这表明RecR蛋白可调节DNA链入侵与退火途径之间的选择。此外,我们显示了UvsY蛋白使ssDNA退火。此外,仅与同源ssDNA结合蛋白复合的ssDNA在UvsY蛋白存在下进行退火。这些结果表明RecO和可能的UvsY蛋白是Rad52蛋白的功能对应物。基于这些功能的守恒,我们提出了一个改进的双链断裂修复模型,其中包括DNA退火作为重要的中间步骤。

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