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Reference - PMID:26436826 - Polymerase δ replicates both strands after homologous recombination-dependent fork restart.

Reference summary

PubMed ID
PMID:26436826
Title
Polymerase δ replicates both strands after homologous recombination-dependent fork restart.
Authors
Miyabe I, Mizuno K, Keszthelyi A, Daigaku Y, Skouteri M, Mohebi S, Kunkel TA, Murray JM, Carr AM
Citation
Nat Struct Mol Biol 2015 Nov;22(11):932-8
Publication year
2015
Abstract
To maintain genetic stability, DNA must be replicated only once per cell cycle, and replication must be completed even when individual replication forks are inactivated. Because fork inactivation is common, passive convergence of an adjacent fork is insufficient to rescue all inactive forks. Thus, eukaryotic cells have evolved homologous recombination-dependent mechanisms to restart persistent inactive forks. Completing DNA synthesis via homologous recombination-restarted replication (HoRReR) ensures cell survival, but at a cost. One such cost is increased mutagenesis because HoRReR is more error prone than canonical replication. This increased error rate implies the HoRReR mechanism is distinct from that of a canonical fork. Here we demonstrate, in Schizosaccharomyces pombe, that a DNA sequence duplicated by HoRReR during S phase is replicated semiconservatively, but both the leading and lagging strands are synthesized by DNA polymerase δ.

Annotation

Comment

PBO:0091801 - DNA polymerase delta synthesizes both leading and lagging strands after homologous recombination-dependent replication fork restart

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Single locus phenotype

FYPO:0005031 - increased ribonucleotide incorporation on lagging strand

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FYPO:0005030 - increased ribonucleotide incorporation on leading strand

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FYPO:0000256 - mutator

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