Iwasaki H, Han Y W, Okamoto T, Ohnishi T, Yoshikawa M, Yamada K, Toh H, Daiyasu H, Ogura T, Shinagawa H
Department of Molecular Microbiology, Research Institute for Microbial Diseases, Osaka University, Suita, Osaka 565-0871, Japan.
Mol Microbiol. 2000 May;36(3):528-38. doi: 10.1046/j.1365-2958.2000.01842.x.
Escherichia coli RuvB protein, together with RuvA, promotes branch migration of Holliday junctions during homologous recombination and recombination repair. The RuvB molecular motor is an intrinsic ATP-dependent DNA helicase with a hexameric ring structure and its architecture has been suggested to be related to those of the members of the AAA+ protein class. In this study, we isolated a large number of plasmids carrying ruvB mutant genes and identified amino acid residues important for the RuvB functions by examining the in vivo DNA repair activities of the mutant proteins. Based on these mutational studies and amino acid conservation among various RuvBs, we identified 10 RuvB motifs that agreed well with the features of the AAA+ protein class and that distinguished the primary structure of RuvB from that of typical DNA/RNA helicases with seven conserved helicase motifs.
大肠杆菌RuvB蛋白与RuvA一起,在同源重组和重组修复过程中促进霍利迪连接体的分支迁移。RuvB分子马达是一种具有六聚体环结构的内在ATP依赖性DNA解旋酶,其结构已被认为与AAA +蛋白家族成员的结构有关。在本研究中,我们分离出大量携带ruvB突变基因的质粒,并通过检测突变蛋白的体内DNA修复活性,鉴定出对RuvB功能重要的氨基酸残基。基于这些突变研究和各种RuvB之间的氨基酸保守性,我们鉴定出10个RuvB基序,它们与AAA +蛋白家族的特征非常吻合,并且将RuvB的一级结构与具有七个保守解旋酶基序的典型DNA/RNA解旋酶区分开来。