EMD-31690

Single-particle
3.4 Å
EMD-31690 Deposition: 11/08/2021
Map released: 13/04/2022
Last modified: 13/04/2022
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-31690

Cryo-EM structure of MCM double hexamer bound with two DDKs (Group III)

EMD-31690

Single-particle
3.4 Å
EMD-31690 Deposition: 11/08/2021
Map released: 13/04/2022
Last modified: 13/04/2022
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Saccharomyces cerevisiae S288c
Sample: DH-DDK (State I)

Deposition Authors: Cheng J , Li N , Huo Y, Dang S , Tye B, Gao N , Zhai Y
Structural Insight into the MCM double hexamer activation by Dbf4-Cdc7 kinase.
Cheng J , Li N , Huo Y, Dang S , Tye BK , Gao N , Zhai Y
(2022) Nat Commun , 13 , 1396 - 1396
PUBMED: 35296675
DOI: doi:10.1038/s41467-022-29070-5
ISSN: 2041-1723
Abstract:
The Dbf4-dependent kinase Cdc7 (DDK) regulates DNA replication initiation by phosphorylation of the MCM double hexamer (MCM-DH) to promote helicase activation. Here, we determine a series of cryo electron microscopy (cryo-EM) structures of yeast DDK bound to the MCM-DH. These structures, occupied by one or two DDKs, differ primarily in the conformations of the kinase core. The interactions of DDK with the MCM-DH are mediated exclusively by subunit Dbf4 straddling across the hexamer interface on the three N-terminal domains (NTDs) of subunits Mcm2, Mcm6, and Mcm4. This arrangement brings Cdc7 close to its only essential substrate, the N-terminal serine/threonine-rich domain (NSD) of Mcm4. Dbf4 further displaces the NSD from its binding site on Mcm4-NTD, facilitating an immediate targeting of this motif by Cdc7. Moreover, the active center of Cdc7 is occupied by a unique Dbf4 inhibitory loop, which is disengaged when the kinase core assumes wobbling conformations. This study elucidates the versatility of Dbf4 in regulating the ordered multisite phosphorylation of the MCM-DH by Cdc7 kinase during helicase activation.