Cyclin-dependent kinases (CDKs) activate the firing of replication origins during the S phase of the cell cycle, They also block re-initiation of DNA replication within a single cell cycle, by preventing the assembly of prereplicative complexes at origins. We show here that, in budding yeast, CDKs exclude the essential prereplicative-complex component Mcm4 from the nucleus. Although origin firing can be triggered by the B-type cyclins only, both G1-phase and B-type cyclins cause exit of Mcm4 from the nucleus. These results suggest that G1 cyclins may diminish the cell's capacity to assemble prereplicative complexes before B-type cyclins trigger origin firing during S phase.</p
AbstractBackground: In the budding yeast Saccharomyces cerevisiae, the cyclin-dependent kinases of t...
A prereplicative complex (pre-RC) of proteins is assembled at budding yeast origins of DNA replicati...
A prereplicative complex (pre-RC) of proteins is assembled at budding yeast origins of DNA replicati...
Cyclin-dependent kinases (CDKs) activate the firing of replication origins during the S phase of the...
AbstractBackground: DNA replication and mitosis are triggered by activation of kinase complexes, eac...
Progression through the cell cycle is directed by cyclin dependent kinases (CDKs), which are essenti...
Nuclear extracts from Saccharomyces cerevisiae cells synchronized in S phase support the semiconserv...
International audienceCyclin-dependent (CDK) and Dbf4-dependent (DDK) kinases trigger DNA replicatio...
In all eukaryotes, the initiation of DNA synthesis requires the formation of prereplicative complexe...
A clearer picture of replication control is emerging through the characterization of proteins, such ...
Studies on the initiation of DNA replication in eukaryotes have progressed recently through differen...
Eukaryotic DNA replication uses kinase regulatory pathways to facilitate coordination with other pro...
International audienceIn eukaryotes, the spatial and temporal organization of genome duplication giv...
CDK Regulated Localization of Replication ProteinsMuluye E. LikuAbstractThe precise inheritance of g...
In eukaryotes, the spatial and temporal organization of genome duplication gives rise to distinctive...
AbstractBackground: In the budding yeast Saccharomyces cerevisiae, the cyclin-dependent kinases of t...
A prereplicative complex (pre-RC) of proteins is assembled at budding yeast origins of DNA replicati...
A prereplicative complex (pre-RC) of proteins is assembled at budding yeast origins of DNA replicati...
Cyclin-dependent kinases (CDKs) activate the firing of replication origins during the S phase of the...
AbstractBackground: DNA replication and mitosis are triggered by activation of kinase complexes, eac...
Progression through the cell cycle is directed by cyclin dependent kinases (CDKs), which are essenti...
Nuclear extracts from Saccharomyces cerevisiae cells synchronized in S phase support the semiconserv...
International audienceCyclin-dependent (CDK) and Dbf4-dependent (DDK) kinases trigger DNA replicatio...
In all eukaryotes, the initiation of DNA synthesis requires the formation of prereplicative complexe...
A clearer picture of replication control is emerging through the characterization of proteins, such ...
Studies on the initiation of DNA replication in eukaryotes have progressed recently through differen...
Eukaryotic DNA replication uses kinase regulatory pathways to facilitate coordination with other pro...
International audienceIn eukaryotes, the spatial and temporal organization of genome duplication giv...
CDK Regulated Localization of Replication ProteinsMuluye E. LikuAbstractThe precise inheritance of g...
In eukaryotes, the spatial and temporal organization of genome duplication gives rise to distinctive...
AbstractBackground: In the budding yeast Saccharomyces cerevisiae, the cyclin-dependent kinases of t...
A prereplicative complex (pre-RC) of proteins is assembled at budding yeast origins of DNA replicati...
A prereplicative complex (pre-RC) of proteins is assembled at budding yeast origins of DNA replicati...