The replication checkpoint control in Bacillus subtilis: identification of a novel RTP-binding sequence essential for the replication fork arrest after induction of the stringent response
Autor: | F. Vannier, S. Autret, A. Levine, Yasutaro Fujita, S. J. Séror |
---|---|
Rok vydání: | 1999 |
Předmět: |
DNA Replication
Stringent response DNA Footprinting Guanosine Tetraphosphate Bacillus subtilis Microbiology Chromatography DEAE-Cellulose Ligases chemistry.chemical_compound Plasmid Bacterial Proteins Cloning Molecular Binding site Molecular Biology Gene Models Genetic biology DNase-I Footprinting Sequence Analysis DNA biology.organism_classification Molecular biology DNA-Binding Proteins Replication fork arrest Blotting Southern chemistry Mutagenesis Gene Deletion DNA Plasmids Protein Binding |
Zdroj: | Molecular Microbiology. 31:1665-1679 |
ISSN: | 1365-2958 0950-382X |
DOI: | 10.1046/j.1365-2958.1999.01299.x |
Popis: | We have shown previously that induction of the stringent response in Bacillus subtilis resulted in the arrest of chromosomal replication between 100 and 200 kb either side of oriC at distinct stop sites, designated LSTer and RSTer, left and right stringent terminators respectively. This replication checkpoint was also shown to involve the RTP protein, normally active at the chromosomal terminus. In this study, we show that the replication block is absolutely dependent upon RelA, correlated with high levels of ppGpp, but that efficient arrest at STer sites also requires RTP. DNA–DNA hybridization data indicated that one or more such LSTer sites mapped to gene yxcC (−128 kb from oriC ). A 7.75 kb fragment containing this gene was cloned into a theta replicating plasmid, and plasmid replication arrest, requiring both RelA and RTP, was demonstrated. This effect was polar, with plasmid arrest only detected when the fragment was orientated in the same direction with respect to replication, as in the chromosome. This LSTer2 site was further mapped to a 3.65 kb fragment overlapping the next40 probe. Remarkably, this fragment contains a 17 bp sequence (B′-1) showing 76% identity with an RTP binding site (B sequence) present at the chromosomal terminus. This B′-1 sequence, located in the gene yxcC, efficiently binds RTP in vitro, as shown by DNA gel retardation studies and DNase I footprinting. Importantly, precise deletion of this sequence abolished the replication arrest. We propose that this modified B site is an essential constituent of the LSTer2 site. The differences between arrest at the normal chromosomal terminus and arrest at LSTer site are discussed. |
Databáze: | OpenAIRE |
Externí odkaz: |