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PMID: 30760776 Published · epublish English

Single molecule tracking reveals functions for RarA at replication forks but also independently from replication during DNA repair in Bacillus subtilis.

Scientific reports ·Vol. 9 ·No. 1 ·2019-00-13

Romero H, Rösch TC, Hernández-Tamayo R, Lucena D, Ayora S, Alonso JC, Graumann PL

Abstract

RarA is a widely conserved protein proposed to be involved in recombination-dependent replication. We present a cell biological approach to identify functional connections between RarA and other proteins using single molecule tracking. We found that 50% of RarA molecules were static, mostly close to replication forks and likely DNA-bound, while the remaining fraction was highly dynamic throughout the cells. RarA alternated between static and dynamic states. Exposure to H2O2 increased the fraction of dynamic molecules, but not treatment with mitomycin C or with methyl methanesulfonate, which was exacerbated by the absence of RecJ, RecD2, RecS and RecU proteins. The ratio between static and dynamic RarA also changed in replication temperature-sensitive mutants, but in opposite manners, dependent upon inhibition of DnaB or of DnaC (pre)primosomal proteins, revealing an intricate function related to DNA replication restart. RarA likely acts in the context of collapsed replication forks, as well as in conjunction with a network of proteins that affect the activity of the RecA recombinase. Our novel approach reveals intricate interactions of RarA, and is widely applicable for in vivo protein studies, to underpin genetic or biochemical connections, and is especially helpful for investigating proteins whose absence does not lead to any detectable phenotype.

MeSH 主题词
Adenosine Triphosphatases/genetics Bacillus subtilis/genetics DNA Helicases/genetics DNA Repair/genetics DNA Replication/genetics DNA, Bacterial/genetics Gene Expression Regulation, Bacterial/drug effects Hydrogen Peroxide/pharmacology Methyl Methanesulfonate/pharmacology Mitomycin/pharmacology Rec A Recombinases/genetics Single Molecule Imaging
Article Info
Journal
Scientific reports
Abbr.
Sci Rep
ISSN
2045-2322
Published
2019-00-13
Language
English
Country/Region
England
NLM ID
101563288
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