Branch Migration Prevents DNA Loss during Double-Strand Break Repair
Published 2014 View Full Article
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Title
Branch Migration Prevents DNA Loss during Double-Strand Break Repair
Authors
Keywords
DNA repair, DNA electrophoresis, DNA replication, Agarose gel electrophoresis, Chromosome mapping, DNA recombination, Arabinose, Homologous recombination
Journal
PLoS Genetics
Volume 10, Issue 8, Pages e1004485
Publisher
Public Library of Science (PLoS)
Online
2014-08-08
DOI
10.1371/journal.pgen.1004485
References
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Note: Only part of the references are listed.- Evidence for the role ofMycobacterium tuberculosisRecG helicase in DNA repair and recombination
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- Break-induced replication occurs by conservative DNA synthesis
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- Break-Induced DNA Replication
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- Chromothripsis: Chromosomes in Crisis
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- Break-Induced Replication Is Highly Inaccurate
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- Recruitment to stalled replication forks of the PriA DNA helicase and replisome-loading activities is essential for survival
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- Promoting and Avoiding Recombination: Contrasting Activities of the Escherichia coli RuvABC Holliday Junction Resolvase and RecG DNA Translocase
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- RecG Protein and Single-Strand DNA Exonucleases Avoid Cell Lethality Associated With PriA Helicase Activity in Escherichia coli
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- Double Holliday junctions are intermediates of DNA break repair
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- A recombination execution checkpoint regulates the choice of homologous recombination pathway during DNA double-strand break repair
- (2009) S. Jain et al. GENES & DEVELOPMENT
- Replication fork collisions cause pathological chromosomal amplification in cells lacking RecG DNA translocase
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- Pathological replication in cells lacking RecG DNA translocase
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- Resolution of Joint Molecules by RuvABC and RecG Following Cleavage of the Escherichia coli Chromosome by EcoKI
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- DNA double strand break repair and crossing over mediated by RuvABC resolvase and RecG translocase
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- SbcCD Causes a Double-Strand Break at a DNA Palindrome in the Escherichia coli Chromosome
- (2008) John K. Eykelenboom et al. MOLECULAR CELL
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