Replication restart in gyrB Escherichia coli mutants
Open Access
- 9 April 2003
- journal article
- research article
- Published by Wiley in Molecular Microbiology
- Vol. 48 (3) , 845-854
- https://doi.org/10.1046/j.1365-2958.2003.03480.x
Abstract
Gyrase is an essential topoisomerase in bacteria that introduces negative supercoils in DNA and relaxes the positive supercoils that form downstream of proteins tracking on DNA, such as DNA or RNA polymerases. Two gyrase mutants that suffer partial loss of function were used here to study the need for replication restart in conditions in which gyrase activity is affected. We show that the preprimosomal protein PriA is essential for the viability of these gyrB mutants. The helicase function of PriA is not essential. The lethality of the gyrB priA double mutants is suppressed by a dnaC809 mutation, indicating a requirement for primosome assembly in gyrB strains. The lethality of gyrB priA combination of mutations is independent of the level of DNA supercoiling, as gyrB and priA were also co‐lethal in the presence of a ΔtopA mutation. Inactivation of homologous recombination did not affect the viability of gyrB mutants, indicating that replication restart does not require the formation of a recombination intermediate. We propose that the replisome is disassembled from replication forks when replication progression is blocked by the accumulation of positive supercoils in gyrase mutants, and that replication restarts via PriA‐dependent primosome assembly, directly on the in‐activated replication forks, without the formation of a recombination intermediate.Keywords
This publication has 40 references indexed in Scilit:
- Replication fork reversal in DNA polymerase III mutants of Escherichia coli: a role for the β clampMolecular Microbiology, 2002
- gyrB-225, a mutation of DNA gyrase that compensates for topoisomerase I deficiency: investigation of its low activity and quinolone hypersensitivityJournal of Molecular Biology, 2001
- DNA Topoisomerases: Structure, Function, and MechanismAnnual Review of Biochemistry, 2001
- Positive Torsional Strain Causes the Formation of a Four-way Junction at Replication ForksJournal of Biological Chemistry, 2001
- Two Distinct Modes of Strand Unlinking during θ-Type DNA ReplicationJournal of Biological Chemistry, 1996
- Topoisomerase mutations affect the relative abundance of many Escherichia coli proteinsMolecular Microbiology, 1993
- ColE1-type vectors with fully repressible replicationGene, 1991
- DNA topoisomerase I mutantsJournal of Molecular Biology, 1985
- Chi-dependent DNA strand cleavage by RecBC enzymeCell, 1985
- Escherichia coli DNA topoisomerase I mutants have compensatory mutations in DNA gyrase genesCell, 1982