Item request has been placed! ×
Item request cannot be made. ×
loading  Processing Request

Nucleosome-directed replication origin licensing independent of a consensus DNA sequence

Item request has been placed! ×
Item request cannot be made. ×
loading   Processing Request
  • Additional Information
    • Publication Information:
      Springer Science and Business Media LLC, 2022.
    • Publication Date:
      2022
    • Abstract:
      The numerous enzymes and cofactors involved in eukaryotic DNA replication are conserved from yeast to human, and the budding yeast Saccharomyces cerevisiae (S.c.) has been a useful model organism for these studies. However, there is a gap in our knowledge of why replication origins in higher eukaryotes do not use a consensus DNA sequence as found in S.c. Using in vitro reconstitution and single-molecule visualization, we show here that S.c. origin recognition complex (ORC) stably binds nucleosomes and that ORC-nucleosome complexes have the intrinsic ability to load the replicative helicase MCM double hexamers onto adjacent nucleosome-free DNA regardless of sequence. Furthermore, we find that Xenopus laevis nucleosomes can substitute for yeast ones in engaging with ORC. Combined with re-analyses of genome-wide ORC binding data, our results lead us to propose that the yeast origin recognition machinery contains the cryptic capacity to bind nucleosomes near a nucleosome-free region and license origins, and that this nucleosome-directed origin licensing paradigm generalizes to all eukaryotes.
    • ISSN:
      2041-1723
    • Accession Number:
      10.1038/s41467-022-32657-7
    • Rights:
      OPEN
    • Accession Number:
      edsair.doi.dedup.....68082e3ded0004819d338702ba64c7e3