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首页> 外文期刊>Protein and peptide letters >Both OB Folds of Single-Stranded DNA-Binding Protein Are Essential for Its ssDNA Binding Activity in Deinococcus radiodurans
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Both OB Folds of Single-Stranded DNA-Binding Protein Are Essential for Its ssDNA Binding Activity in Deinococcus radiodurans

机译:单链DNA结合蛋白的两个OB折叠是其在放射性球菌中的ssDNA结合活性所必需的。

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摘要

The single-stranded DNA-binding proteins are crucial in all kinds of DNA metabolic processes. Deinococcus SSB-like proteins are homodimers in nature and contain two OB folds per monomer, in contrast to other bacterial SSB proteins that are functionally active as homotetramers. We generated four truncated variants of DraSSB protein, based on its crystal structure (PDB code: 1SE8). Gel filtration showed that DraSSB, DSCT (lack C-tail) and DSCC (lack C-tail and C-terminal OB) were mostly homodimers, and DSN (lack N-terminal OB) and DSNC (lack N-terminal OB and connector) were mostly monomers. The gel filtration supported the hypothesis that the N-terminal domain played a predominant role in dimerisation. Biochemical characterization was used to determine the role of each OB fold in DNA binding, by EMSA and FRET. EMSA results suggested that binding of DraSSB to ssDNA substrate needed both N- and C-terminal OB-folds, and also their interaction to achieve optimum DNA binding. DSCT might possess two ssDNA binding modes compared with DraSSB. The C-terminal tail was not essential for binding of ssDNA substrates. The C-terminal OB-fold had the ability to bind to the bubble structure. Furthermore, the FRET results for DSCT verified the hypothesis that DSCT showed two different binding modes for ssDNA, similarly to EcoSSB.
机译:单链DNA结合蛋白在各种DNA代谢过程中都至关重要。与其他具有同四聚体功能的细菌SSB蛋白相比,Deinococcus SSB样蛋白本质上是同二聚体,每个单体含有两个OB折叠。我们基于其晶体结构(PDB代码:1SE8)生成了DraSSB蛋白的四个截短变体。凝胶过滤显示,DraSSB,DSCT(缺乏C尾)和DSCC(缺乏C尾和C端OB)主要是同二聚体,而DSN(缺乏N端OB)和DSNC(缺乏N端OB和连接器)主要是单体。凝胶过滤支持以下假设:N末端结构域在二聚作用中起主要作用。通过EMSA和FRET,使用生化表征来确定每个OB折叠在DNA结合中的作用。 EMSA结果表明,DraSSB与ssDNA底物的结合需要N端和C端的OB折叠,以及它们的相互作用才能实现最佳的DNA结合。与DraSSB相比,DSCT可能具有两种ssDNA结合模式。 C末端的尾部对于ssDNA底物的结合不是必需的。 C末端的OB-折叠具有结合至气泡结构的能力。此外,DSCT的FRET结果证实了以下假设:DSCT与ssSSB相似,显示出两种不同的ssDNA结合模式。

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