Which kinase is involved in regulating the initiation of DNA replication in S phase?
Initiation of DNA replication at licensed origins depends on two kinase families that separate licensing from firing. DDK kinase complex Dbf4-Cdc7 phosphorylates MCM2-7 helicase at N-terminal serine-threonine clusters, promoting Cdc45 recruitment. Second trigger is S-phase CDK activity supplied by cyclin E-CDK2 that peaks at G1/S border and cyclin A-CDK2 that sustains activity into S phase. Cyclin E-CDK2 phosphorylates Treslin/TICRR at threonine 969, MTBP, RecQL4, and orthologs of yeast Sld2 and Sld3, enabling their binding to BRCT repeats of TopBP1 and assembly of Cdc45-MCM-GINS active helicase known as CMG that unwinds duplex DNA and recruits DNA polymerases alpha, delta, epsilon, and Ctf4 for leading and lagging strand synthesis. CDK2 also phosphorylates licensing factors Cdc6 and Cdt1 for nuclear export and SCF-dependent proteolysis to prevent re-licensing. CDK4/6 acts indirectly in early G1 to induce cyclin E transcription via Rb phosphorylation. Inhibition of CDK2 blocks origin firing without affecting cyclin D accumulation. This circuitry is highly conserved across eukaryotes, integrating growth factor signals, DNA damage surveillance, and developmental cues, and its disruption frequently underlies oncogenesis, providing targets for checkpoint inhibitors and cancer therapeutics.
Ref: Labib, Genes & Dev 2010, Origin Activation. Limas & Cook, Genes & Dev 2019, CDK Roles S Phase.