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人类Rad54蛋白与分支DNA分子的相互作用。

Interactions of human rad54 protein with branched DNA molecules.

作者信息

Mazina Olga M, Rossi Matthew J, Thomaä Nicolas H, Mazin Alexander V

机构信息

Department of Biochemistry and Molecular Biology, Drexel University College of Medicine, Philadelphia, Pennsylvania 19102-1192, USA.

出版信息

J Biol Chem. 2007 Jul 20;282(29):21068-80. doi: 10.1074/jbc.M701992200. Epub 2007 May 31.

Abstract

The Rad54 protein plays an important role during homologous recombination in eukaryotes. The protein belongs to the Swi2/Snf2 family of ATP-dependent DNA translocases. We previously showed that yeast and human Rad54 (hRad54) specifically bind to Holliday junctions and promote branch migration. Here we examined the minimal DNA structural requirements for optimal hRad54 ATPase and branch migration activity. Although a 12-bp double-stranded DNA region of branched DNA is sufficient to induce ATPase activity, the minimal substrate that gave rise to optimal stimulation of the ATP hydrolysis rate consisted of two short double-stranded DNA arms, 15 bp each, combined with a 45-nucleotide single-stranded DNA branch. We showed that hRad54 binds preferentially to the open and not to the stacked conformation of branched DNA. Stoichiometric titration of hRad54 revealed formation of two types of hRad54 complexes with branched DNA substrates. The first of them, a dimer, is responsible for the ATPase activity of the protein. However, branch migration activity requires a significantly higher stoichiometry of hRad54, approximately 10 +/- 2 protein monomers/DNA molecule. This pleomorphism of hRad54 in formation of oligomeric complexes with DNA may correspond to multiple functions of the protein in homologous recombination.

摘要

Rad54蛋白在真核生物的同源重组过程中发挥着重要作用。该蛋白属于依赖ATP的DNA转位酶的Swi2/Snf2家族。我们之前表明,酵母和人类Rad54(hRad54)特异性结合霍利迪连接体并促进分支迁移。在此,我们研究了实现最佳hRad54 ATP酶和分支迁移活性所需的最小DNA结构要求。尽管分支DNA的一个12 bp双链DNA区域足以诱导ATP酶活性,但能引起ATP水解速率最佳刺激的最小底物由两条短双链DNA臂(各15 bp)与一个45个核苷酸的单链DNA分支组成。我们表明,hRad54优先结合分支DNA的开放构象而非堆积构象。hRad54的化学计量滴定显示,hRad54与分支DNA底物形成了两种类型的复合物。其中第一种是二聚体,负责该蛋白的ATP酶活性。然而,分支迁移活性需要显著更高化学计量的hRad54,约为10±2个蛋白质单体/DNA分子。hRad54在与DNA形成寡聚复合物时的这种多态性可能对应于该蛋白在同源重组中的多种功能。

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