首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Mechanism for Single-stranded DNA-binding Protein (SSB) Displacement from Single-stranded DNA upon SSB-RecO Interaction
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A Mechanism for Single-stranded DNA-binding Protein (SSB) Displacement from Single-stranded DNA upon SSB-RecO Interaction

机译:SSB-RecO相互作用后单链DNA结合蛋白(SSB)从单链DNA置换的机制。

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摘要

Displacement of single-stranded DNA (ssDNA)-binding protein (SSB) from ssDNA is necessary for filament formation of RecA on ssDNA to initiate homologous recombination. The interaction between RecO and SSB is considered to be important for SSB displacement; however, the interaction has not been characterized at the atomic level. In this study, to clarify the mechanism underlying SSB displacement from ssDNA upon RecO binding, we examined the interaction between Thermus thermophilus RecO and cognate SSB by NMR analysis. We found that SSB interacts with the C-terminal positively charged region of RecO. Based on this result, we constructed some RecO mutants. The R127A mutant had considerably decreased binding affinity for SSB and could not anneal SSB-coated ssDNAs. Further, the mutant in the RecOR complex prevented the recovery of ssDNA-dependent ATPase activity of RecA from inhibition by SSB. These results indicated that the region surrounding Arg-127 is the binding site of SSB. We also performed NMR analysis using the C-terminal peptide of SSB and found that the acidic region of SSB is involved in the interaction with RecO, as seen in other protein-SSB interactions. Taken together with the findings of previous studies, we propose a model for SSB displacement from ssDNA where the acidic C-terminal region of SSB weakens the ssDNA binding affinity of SSB when the dynamics of the C-terminal region are suppressed by interactions with other proteins, including RecO.
机译:从ssDNA置换单链DNA(ssDNA)结合蛋白(SSB)对于在ssDNA上启动Reca的细丝形成以启动同源重组是必要的。 RecO和SSB之间的相互作用被认为对SSB位移很重要。但是,这种相互作用尚未在原子水平上表征。在这项研究中,为弄清ResO结合后SSB从ssDNA移出的潜在机理,我们通过NMR分析检查了嗜热栖热菌RecO与同源SSB之间的相互作用。我们发现,SSB与RecO的C端带正电的区域相互作用。基于此结果,我们构建了一些RecO突变体。 R127A突变体与SSB的结合亲和力大大降低,无法与SSB包被的ssDNA退火。此外,RecOR复合物中的突变体阻止了SSB抑制RecA的ssDNA依赖性ATPase活性的恢复。这些结果表明,Arg-127周围的区域是SSB的结合位点。我们还使用SSB的C末端肽进行了NMR分析,发现SSB的酸性区域参与了与RecO的相互作用,如在其他蛋白质-SSB相互作用中所见。结合以前的研究结果,我们提出了一个从ssDNA置换SSB的模型,其中当C末端区域的动力学受到与其他蛋白质相互作用的抑制时,SSB的酸性C末端区域削弱了SSB的ssDNA结合亲和力。 ,包括RecO。

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