Roe S M, Barlow T, Brown T, Oram M, Keeley A, Tsaneva I R, Pearl L H
Department of Biochemistry and Molecular Biology, University College London, United Kingdom.
Mol Cell. 1998 Sep;2(3):361-72. doi: 10.1016/s1097-2765(00)80280-4.
Holliday junctions occur as intermediates in homologous recombination and DNA repair. In bacteria, resolution of Holliday junctions is accomplished by the RuvABC system, consisting of a junction-specific helicase complex RuvAB, which promotes branch migration, and a junction-specific endonuclease RuvC, which nicks two strands. The crystal structure of a complex between the RuvA protein of M. leprae and a synthetic four-way junction has now been determined. Rather than binding on the open surface of a RuvA tetramer as previously suggested, the DNA is sandwiched between two RuvA tetramers, which form a closed octameric shell, stabilized by a conserved tetramer-tetramer interface. Interactions between the DNA backbone and helix-hairpin-helix motifs from both tetramers suggest a mechanism for strand separation promoted by RuvA.
霍利迪连接体作为同源重组和DNA修复的中间体出现。在细菌中,霍利迪连接体的拆分由RuvABC系统完成,该系统由促进分支迁移的连接体特异性解旋酶复合物RuvAB和切割两条链的连接体特异性核酸内切酶RuvC组成。现在已经确定了麻风分枝杆菌的RuvA蛋白与合成四链连接体之间复合物的晶体结构。DNA并非如先前推测的那样结合在RuvA四聚体的开放表面,而是夹在两个RuvA四聚体之间,这两个四聚体形成一个封闭的八聚体壳,由保守的四聚体-四聚体界面稳定。来自两个四聚体的DNA主链与螺旋-发夹-螺旋基序之间的相互作用提示了一种由RuvA促进链分离的机制。