4.7 Article

Tracking replication enzymology in vivo by genome-wide mapping of ribonucleotide incorporation

Journal

NATURE STRUCTURAL & MOLECULAR BIOLOGY
Volume 22, Issue 3, Pages 185-191

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nsmb.2957

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Funding

  1. Division of Intramural Research of the US National Institutes of Health (NIH), National Institute of Environmental Health Sciences [Z01 ES065070]
  2. NIH [2R01GM052319-16A1]

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Ribonucleotides are frequently incorporated into DNA during replication in eukaryotes. Here we map genome-wide distribution of these ribonucleotides as markers of replication enzymology in budding yeast, using a new 5' DNA end-mapping method, hydrolytic end sequencing (HydEn-seq). HydEn-seq of DNA from ribonucleotide excision repair-deficient strains reveals replicase- and strand-specific patterns of ribonucleotides in the nuclear genome. These patterns support the roles of DNA polymerases a and 8 in lagging-strand replication and of DNA polymerase w in leading-strand replication. They identify replication origins, termination zones and variations in ribonucleotide incorporation frequency across the genome that exceed three orders of magnitude. HydEn-seq also reveals strand-specific 5' DNA ends at mitochondrial replication origins, thus suggesting unidirectional replication of a circular genome. Given the conservation of enzymes that incorporate and process ribonucleotides in DNA, HydEn-seq can be used to track replication enzymology in other organisms.

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