Giraud-Panis M J, Lilley D M
Department of Biochemistry, The University of Dundee, Dundee, DD1 4HN, UK.
J Mol Biol. 1998 Apr 24;278(1):117-33. doi: 10.1006/jmbi.1998.1681.
RusA is a relatively small DNA junction-resolving enzyme of lambdoid phage-origin. Many of the physical characteristics of this enzyme are similar to those of junction-resolving enzymes of different origins. RusA binds to DNA junctions as a dimer, with a dissociation constant of 2 to 7 nM. RusA also exists in dimeric form in free solution, with a half time for subunit exchange of 4.2 minutes. We find that RusA can cleave both fixed junctions and those that can undergo a number of steps of branch migration, and confirm that the enzyme exhibits a strong preference for cleavage 5' to a CpC sequence. We have isolated a mutant protein, RusA D70N, that is completely inactive in cleavage while binding normally to DNA junctions, suggesting a role for aspartate 70 in the cleavage reaction. Constraining the conformation of the junction by means of tethering the helical ends leads to a marked reduction in cleavage rate by RusA, suggesting that the structure must be altered for cleavage. Using comparative gel electrophoresis we find that the global structure of the DNA junction is altered on RusA binding, into a structure that is different from any that is formed by the free junction. Moreover, the structure of the complex is the same irrespective of the presence or absence of magnesium ions. Thus, like all the junction-resolving enzymes, RusA both recognises and distorts the structure of DNA junctions.
RusA是一种源自λ样噬菌体的相对较小的DNA连接点解析酶。该酶的许多物理特性与不同来源的连接点解析酶相似。RusA以二聚体形式结合到DNA连接点上,解离常数为2至7 nM。RusA在游离溶液中也以二聚体形式存在,亚基交换的半衰期为4.2分钟。我们发现RusA既能切割固定的连接点,也能切割那些可以经历多个分支迁移步骤的连接点,并证实该酶对在CpC序列5'端进行切割表现出强烈偏好。我们分离出了一种突变蛋白RusA D70N,它在切割方面完全无活性,但能正常结合到DNA连接点上,这表明天冬氨酸70在切割反应中起作用。通过束缚螺旋末端来限制连接点的构象会导致RusA的切割速率显著降低,这表明切割时结构必须发生改变。使用比较凝胶电泳,我们发现DNA连接点的整体结构在RusA结合后发生了改变,变成了一种与游离连接点形成 的任何结构都不同的结构。此外,无论是否存在镁离子,复合物的结构都是相同的。因此,与所有连接点解析酶一样,RusA既能识别又能扭曲DNA连接点的结构。