Hypothesis. RuvA, RuvB and RuvC proteins: Cleaning‐up after recombinational repairs in E. coli
- 1 May 1993
- Vol. 15 (5) , 355-358
- https://doi.org/10.1002/bies.950150511
Abstract
After the completion of RecA protein‐mediated recombinational repair of daughter‐strand gaps in E. coli, participating chromosomes are held together by Holliday junctions. Until recently, it was not known how the cell disengages the connected chromosomes. Accumulating genetic data suggested that the product of the ruv locus participates in recombinational repair and acts after the formation of Holliday junctions. Molecular characterization of the locus revealed that there are three genes – ruvA, ruvB and ruvC; mutations in any one of the genes confer the same phenotype. Recently, the RuvC protein was found to be a Holliday junction resolvase. At first glance, the resolving activity of RuvC alone would appear to be sufficient for the separation of recombining chromosomes. However, in vitro studies show that the filament of RecA protein is unable to dissociate from the products of the recombination reaction. Thus, in vivo, even if the Holliday junctions are resolved by RuvC, RecA filament must be holding two DNA duplexes together. New findings about enzymatic activities of RuvA and RuvB proteins foster the hope that the machinery for removing the RecA filament from DNA has been found.Keywords
This publication has 38 references indexed in Scilit:
- Discontinuities in the DNA synthesized in an Excision-defective strain of Escherichia coli following ultraviolet irradiationPublished by Elsevier ,2004
- Biological roles of the Escherichia coli RuvA, RuvB and RuvC proteins revealedMolecular Microbiology, 1992
- ATP-dependent branch migration of holliday junctions promoted by the RuvA and RuvB proteins of E. coliCell, 1992
- Movement and resolution of holliday junctions by enzymes from E. coliCell, 1992
- Formation and resolution of recombination intermediates by E. coliRecA and RuvC proteinsNature, 1991
- In vitro replication through nucleosomes without histone displacementNature, 1990
- Action of RecBCD enzyme on cruciform DNAJournal of Molecular Biology, 1990
- Dissociation pathway for recA nucleoprotein filaments formed on linear duplex DNAJournal of Molecular Biology, 1989
- Stimulation of protein-directed strand exchange by a DNA helicaseNature, 1987
- Properties of the T4 bacteriophage DNA replication apparatus: The T4 dda DNA helicase is required to pass a bound RNA polymerase moleculeCell, 1983