Chromosomal location of the DnaA-reactivating sequenceDARS2is important to regulate timely initiation of DNA replication inEscherichia coli
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Title
Chromosomal location of the DnaA-reactivating sequenceDARS2is important to regulate timely initiation of DNA replication inEscherichia coli
Authors
Keywords
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Journal
GENES TO CELLS
Volume 21, Issue 9, Pages 1015-1023
Publisher
Wiley
Online
2016-07-25
DOI
10.1111/gtc.12395
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Note: Only part of the references are listed.- The Arg Fingers of Key DnaA Protomers Are Oriented Inward within the Replication OriginoriCand Stimulate DnaA Subcomplexes in the Initiation Complex
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- Control regions for chromosome replication are conserved with respect to sequence and location among Escherichia coli strains
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- Chromosome position effects on gene expression in Escherichia coli K-12
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- Genome conformation capture reveals that the Escherichia coli chromosome is organized by replication and transcription
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- (2011) Jon M Kaguni CURRENT OPINION IN CHEMICAL BIOLOGY
- Highly organized DnaA– oriC complexes recruit the single-stranded DNA for replication initiation
- (2011) Shogo Ozaki et al. NUCLEIC ACIDS RESEARCH
- Regulation of chromosomal replication initiation by oriC-proximal DnaA-box clusters in Bacillus subtilis
- (2011) Hajime Okumura et al. NUCLEIC ACIDS RESEARCH
- Regulation of the replication cycle: conserved and diverse regulatory systems for DnaA and oriC
- (2010) Tsutomu Katayama et al. NATURE REVIEWS MICROBIOLOGY
- Bacterial nucleoid-associated proteins, nucleoid structure and gene expression
- (2010) Shane C. Dillon et al. NATURE REVIEWS MICROBIOLOGY
- Coordination of genomic structure and transcription by the main bacterial nucleoid-associated protein HU
- (2009) Michael Berger et al. EMBO REPORTS
- Specific genomic sequences of E. coli promote replicational initiation by directly reactivating ADP-DnaA
- (2009) K. Fujimitsu et al. GENES & DEVELOPMENT
- The MatP/matS Site-Specific System Organizes the Terminus Region of the E. coli Chromosome into a Macrodomain
- (2008) Romain Mercier et al. CELL
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