4.8 Article

DDK regulates replication initiation by controlling the multiplicity of Cdc45-GINS binding to Mcm2-7

Journal

ELIFE
Volume 10, Issue -, Pages -

Publisher

ELIFE SCIENCES PUBLICATIONS LTD
DOI: 10.7554/eLife.65471

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Funding

  1. Howard Hughes Medical Institute
  2. National Institutes of Health [R01 GM52339, R01 GM81648, T32 GM007287]

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The committed step of eukaryotic DNA replication occurs when Mcm2-7 replicative helicases are activated. Helicase activation requires the recruitment of Cdc45 and GINS to form CMGs. The study found that Cdc45 and GINS are recruited to Mcm2-7 in two stages, with phosphorylation modulating the process.
The committed step of eukaryotic DNA replication occurs when the pairs of Mcm2-7 replicative helicases that license each replication origin are activated. Helicase activation requires the recruitment of Cdc45 and GINS to Mcm2-7, forming Cdc45-Mcm2-7-GINS complexes (CMGs). Using single-molecule biochemical assays to monitor CMG formation, we found that Cdc45 and GINS are recruited to loaded Mcm2-7 in two stages. Initially, Cdc45, GINS, and likely additional proteins are recruited to unstructured Mcm2-7 N-terminal tails in a Dbf4-dependent kinase (DDK)-dependent manner, forming Cdc45-tail-GINS intermediates (CtGs). DDK phosphorylation of multiple phosphorylation sites on the Mcm2-7 tails modulates the number of CtGs formed per Mcm2-7. In a second, inefficient event, a subset of CtGs transfer their Cdc45 and GINS components to form CMGs. Importantly, higher CtG multiplicity increases the frequency of CMG formation. Our findings reveal the molecular mechanisms sensitizing helicase activation to DDK levels with implications for control of replication origin efficiency and timing.

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