Hishida Takashi, Iwasaki Hiroshi, Han Yong-Woon, Ohnishi Takayuki, Shinagawa Hideo
Research Institute for Microbial Diseases, Osaka University, Suita, Osaka 565-0871, Japan.
Genes Cells. 2003 Sep;8(9):721-30. doi: 10.1046/j.1365-2443.2003.00670.x.
Escherichia coli RuvAB promotes branch migration of Holliday junctions during recombination repair and homologous recombination. RuvB forms a hexameric ring through which duplex DNA passes and is translocated in an ATP-dependent manner. ATPase-deficient RuvB mutant K68A has a mutation in the Walker A motif and exerts a dominant-negative effect on in vivo repair of UV-induced DNA damage. In this study, we examined RuvAB-dependent branch migration in the presence of a mutant RuvB, K68A.
Mixing K68A with wild-type RuvB resulted in the formation of heterohexamers that showed unique properties of DNA binding, ATPase, and branch migration activities different from those of either wild-type or mutant homohexamers. RuvB heterohexamers inhibited branch migration and caused Holliday junctions to accumulate during RecA-mediated strand exchange. In the presence of RuvA, RuvB heterohexamers had Holliday junction-dependent ATPase activity, but did not promote branch migration.
These results suggest that functional cooperation among the subunits in the hexamers is required for branch migration, but inclusion of inactive subunits is tolerated for ATP hydrolysis. Therefore, we propose that an essential ATP hydrolysis-dependent functional cooperation is induced in RuvB hexamer subunits during RuvAB-mediated branch migration.
大肠杆菌RuvAB在重组修复和同源重组过程中促进霍利迪连接体的分支迁移。RuvB形成一个六聚体环,双链DNA从中穿过并以ATP依赖的方式进行转运。ATP酶缺陷型RuvB突变体K68A在沃克A基序中有一个突变,对紫外线诱导的DNA损伤的体内修复具有显性负效应。在本研究中,我们检测了在存在突变体RuvB K68A的情况下RuvAB依赖的分支迁移。
将K68A与野生型RuvB混合导致形成异源六聚体,其显示出与野生型或突变型同源六聚体不同的独特的DNA结合、ATP酶和分支迁移活性特性。RuvB异源六聚体抑制分支迁移,并在RecA介导的链交换过程中导致霍利迪连接体积累。在存在RuvA的情况下,RuvB异源六聚体具有霍利迪连接体依赖的ATP酶活性,但不促进分支迁移。
这些结果表明,六聚体中亚基之间的功能协作对于分支迁移是必需的,但包含无活性亚基对于ATP水解是可容忍的。因此,我们提出在RuvAB介导的分支迁移过程中,RuvB六聚体亚基中诱导了一种必需的ATP水解依赖的功能协作。