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确定RecR的Toprim结构域为RecF和RecO的结合位点。RecR在双链DNA-单链DNA连接处的RecFOR组装中的作用。

Identification of the RecR Toprim domain as the binding site for both RecF and RecO. A role of RecR in RecFOR assembly at double-stranded DNA-single-stranded DNA junctions.

作者信息

Honda Masayoshi, Inoue Jin, Yoshimasu Masatoshi, Ito Yutaka, Shibata Takehiko, Mikawa Tsutomu

机构信息

RIKEN Discovery Research Institute, 2-1, Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

J Biol Chem. 2006 Jul 7;281(27):18549-59. doi: 10.1074/jbc.M512658200. Epub 2006 May 4.

Abstract

The RecR protein forms complexes with RecF or RecO that direct the specific loading of RecA onto gapped DNA. However, the binding sites of RecF and RecO on RecR have yet to be identified. In this study, a Thermus thermophilus RecR dimer model was constructed by NMR analysis and homology modeling. NMR titration analysis suggested that the hairpin region of the helix-hairpin-helix motif in the cavity of the RecR dimer is a binding site for double-stranded DNA (dsDNA) and that the acidic cluster region of the Toprim domain is a RecO binding site. Mutations of Glu-84, Asp-88, and Glu-144 residues comprising that acidic cluster were generated. The E144A and E84A mutations decreased the binding affinity for RecO, but the D88A did not. Interestingly, the binding ability to RecF was abolished by E144A, suggesting that the region surrounding the RecR Glu-144 residue could be a binding site not only for RecO but also for RecF. Furthermore, RecR and RecF formed a 4:2 heterohexamer in solution that was unaffected by adding RecO, indicating a preference by RecR for RecF over RecO. The RecFR complex is considered to be involved in the recognition of the dsDNA-ssDNA junction, whereas RecO binds single-stranded DNA (ssDNA) and ssDNA-binding protein. Thus, the RecR Toprim domain may contribute to the RecO interaction with RecFR complexes at the dsDNA-ssDNA junction site during recombinational DNA repair mediated by the RecFOR.

摘要

RecR蛋白与RecF或RecO形成复合物,将RecA特异性加载到有缺口的DNA上。然而,RecF和RecO在RecR上的结合位点尚未确定。在本研究中,通过核磁共振分析和同源建模构建了嗜热栖热菌RecR二聚体模型。核磁共振滴定分析表明,RecR二聚体腔中螺旋-发夹-螺旋基序的发夹区域是双链DNA(dsDNA)的结合位点,Toprim结构域的酸性簇区域是RecO的结合位点。产生了组成该酸性簇的Glu-84、Asp-88和Glu-144残基的突变。E144A和E84A突变降低了对RecO的结合亲和力,但D88A突变没有。有趣的是,E144A消除了对RecF的结合能力,这表明RecR的Glu-144残基周围区域可能不仅是RecO的结合位点,也是RecF的结合位点。此外,RecR和RecF在溶液中形成了4:2异源六聚体,添加RecO不会影响该异源六聚体,这表明RecR对RecF的偏好超过RecO。RecFR复合物被认为参与双链DNA-单链DNA连接点的识别,而RecO结合单链DNA(ssDNA)和单链DNA结合蛋白。因此,在由RecFOR介导的重组DNA修复过程中,RecR的Toprim结构域可能有助于RecO与dsDNA-ssDNA连接点处的RecFR复合物相互作用。

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