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PMID: 30954900 Published · ppublish English

Bacillus subtilis RarA acts at the interplay between replication and repair-by-recombination.

DNA repair ·Vol. 78 ·2019-00-00

Romero H, Torres R, Hernández-Tamayo R, Carrasco B, Ayora S, Graumann PL, Alonso JC

Abstract

Bacterial RarA is thought to play crucial roles in the cellular response to blocked replication forks. We show that lack of Bacillus subtilis RarA renders cells very sensitive to H2O2, but not to methyl methane sulfonate or 4-nitroquinoline-1-oxide. RarA is epistatic to RecA in response to DNA damage. Inactivation of rarA partially suppressed the DNA repair defect of mutants lacking translesion synthesis polymerases. RarA may contribute to error-prone DNA repair as judged by the reduced frequency of rifampicin-resistant mutants in ΔrarA and in ΔpolY1 ΔrarA cells. The absence of RarA strongly reduced the viability of dnaD23ts and dnaB37ts cells upon partial thermal inactivation, suggesting that ΔrarA cells are deficient in replication fork assembly. A ΔrarA mutation also partially reduced the viability of dnaC30ts and dnaX51ts cells and slightly improved the viability of dnaG40ts cells at semi-permissive temperature. These results suggest that RarA links re-initiation of DNA replication with repair-by-recombination by controlling the access of the replication machinery to a collapsed replication fork.

Keywords
DNA repair DnaB DnaD RecA mediators Translesion synthersis
MeSH 主题词
Bacillus subtilis/drug effects,genetics,metabolism Bacterial Proteins/metabolism DNA Damage DNA Repair/drug effects,genetics DNA Replication/drug effects,genetics Hydrogen Peroxide/pharmacology Mutagenesis Rec A Recombinases/metabolism Recombination, Genetic/drug effects
Article Info
Journal
DNA repair
Abbr.
DNA Repair (Amst)
ISSN
1568-7856
Published
2019-00-00
Language
English
Country/Region
Netherlands
NLM ID
101139138
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