Bussen Wendy, Raynard Steven, Busygina Valeria, Singh Akhilesh K, Sung Patrick
Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, Connecticut 06520, USA.
J Biol Chem. 2007 Oct 26;282(43):31484-92. doi: 10.1074/jbc.M706116200. Epub 2007 Aug 28.
BLM, the protein mutated in Bloom's syndrome, possesses a helicase activity that can dissociate DNA structures, including the Holliday junction, expected to arise during homologous recombination. BLM is stably associated with topoisomerase IIIalpha (Topo IIIalpha) and the BLAP75 protein. The BLM-Topo IIIalpha-BLAP75 (BTB) complex can efficiently resolve a DNA substrate that harbors two Holliday junctions (the double Holliday junction) in a non-crossover manner. Here we show that the Holliday junction unwinding activity of BLM is greatly enhanced as a result of its association with Topo IIIalpha and BLAP75. Enhancement of this BLM activity requires both Topo IIIalpha and BLAP75. Importantly, Topo IIIalpha cannot be substituted by Escherichia coli Top3, and the Holliday junction unwinding activity of BLM-related helicases WRN and RecQ is likewise impervious to Topo IIIalpha and BLAP75. However, the topoisomerase activity of Topo IIIalpha is dispensable for the enhancement of the DNA unwinding reaction. We have also ascertained the requirement for the BLM ATPase activity in double Holliday junction dissolution and DNA unwinding by constructing, purifying, and characterizing specific mutant variants that lack this activity. These results provide valuable information concerning how the functional integrity of the BTB complex is governed by specific protein-protein interactions among the components of this complex and the enzymatic activities of BLM and Topo IIIalpha.
BLM是在布卢姆综合征中发生突变的蛋白质,具有解旋酶活性,能够解开包括霍利迪连接体在内的DNA结构,这些结构预计会在同源重组过程中出现。BLM与拓扑异构酶IIIα(Topo IIIα)和BLAP75蛋白稳定结合。BLM-Topo IIIα-BLAP75(BTB)复合物能够以非交叉方式有效解析含有两个霍利迪连接体(双霍利迪连接体)的DNA底物。在此我们表明,由于与Topo IIIα和BLAP75结合,BLM的霍利迪连接体解旋活性大大增强。这种BLM活性的增强需要Topo IIIα和BLAP75两者。重要的是,Topo IIIα不能被大肠杆菌Top3替代,并且与BLM相关的解旋酶WRN和RecQ的霍利迪连接体解旋活性同样不受Topo IIIα和BLAP75影响。然而,Topo IIIα的拓扑异构酶活性对于增强DNA解旋反应是可有可无的。我们还通过构建、纯化和表征缺乏该活性的特定突变变体,确定了双霍利迪连接体溶解和DNA解旋过程中对BLM ATP酶活性的需求。这些结果提供了关于BTB复合物的功能完整性如何由该复合物各组分之间的特定蛋白质-蛋白质相互作用以及BLM和Topo IIIα的酶活性所调控的有价值信息。