George H, Kuraoka I, Nauman D A, Kobertz W R, Wood R D, West S C
Clare Hall Laboratories, Imperial Cancer Research Fund, South Mimms, EN6 3LD, UK.
Curr Biol. 2000 Jan 27;10(2):103-6. doi: 10.1016/s0960-9822(00)00296-7.
The Escherichia coli RuvA and RuvB proteins promote the branch migration of Holliday junctions during the late stages of homologous recombination and DNA repair (reviewed in [1]). Biochemical and structural studies of the RuvAB-Holliday junction complex have shown that RuvA binds directly to the Holliday junction [2] [3] [4] [5] [6] and acts as a specificity factor that promotes the targeting of RuvB [7] [8], a hexameric ring protein that drives branch migration [9] [10] [11]. Electron microscopic visualisation of the RuvAB complex revealed that RuvA is flanked by two RuvB hexamers, which bind DNA arms that lie diametrically opposed across the junction [8]. ATP-dependent branch migration occurs as duplex DNA is pumped out through the centre of each ring. Because RuvB possesses well-conserved helicase motifs and RuvAB exhibits a 5'-3' DNA helicase activity in vitro [12], the mechanism of branch migration is thought to involve DNA opening within the RuvB ring, which provides a single strand for the unidirectional translocation of the protein along DNA. We have investigated whether the RuvB ring can translocate along duplex DNA containing a site-directed interstrand psoralen crosslink. Surprisingly, we found that the crosslink failed to inhibit branch migration. We interpret these data as evidence against a base-by-base tracking model and suggest that extensive DNA opening within the RuvB ring is not required for DNA translocation by RuvB.
大肠杆菌的RuvA和RuvB蛋白在同源重组和DNA修复的后期促进霍利迪连接体的分支迁移(见[1]中的综述)。对RuvAB - 霍利迪连接体复合物的生化和结构研究表明,RuvA直接与霍利迪连接体结合[2][3][4][5][6],并作为一种特异性因子促进RuvB的靶向作用,RuvB是一种驱动分支迁移的六聚体环蛋白[7][8]。对RuvAB复合物的电子显微镜观察显示,RuvA两侧各有两个RuvB六聚体,它们结合在连接体上直径相对的DNA臂上[8]。当双链DNA通过每个环的中心被泵出时,发生ATP依赖性分支迁移。由于RuvB具有高度保守的解旋酶基序,并且RuvAB在体外表现出5'-3' DNA解旋酶活性[12],因此分支迁移的机制被认为涉及RuvB环内的DNA解旋,这为蛋白质沿DNA的单向易位提供了一条单链。我们研究了RuvB环是否能沿着含有位点定向链间补骨脂素交联的双链DNA进行易位。令人惊讶的是,我们发现这种交联未能抑制分支迁移。我们将这些数据解释为反对逐个碱基追踪模型的证据,并表明RuvB沿DNA进行易位时,RuvB环内不需要广泛的DNA解旋。