The mitosis-to-endocycle transition requires the controlled inactivation of M phase-associated cyclin-dependent kinase (CDK) activity. Previously, the B-type CDKB1;1 was identified as an important negative regulator of endocycle onset. Here, we demonstrate that CDKB1;1 copurifies and associates with the A2-type cyclin CYCA2;3. Coexpression of CYCA2;3 with CDKB1;1 triggered ectopic cell divisions and inhibited endoreduplication. Moreover, the enhanced endoreduplication phenotype observed after overexpression of a dominant-negative allele of CDKB1;1 could be partially complemented by CYCA2;3 co-overexpression, illustrating that both subunits unite in vivo to form a functional complex. CYCA2;3 protein stability was found to be controlled by CC...
AbstractIn higher eukaryotes, Cdk2 kinase plays an essential role in regulating the G1–S transition....
Cell proliferation is the main driving force for plant growth. Although genome sequence analysis rev...
Entry into mitosis is universally controlled by cyclin-dependent kinases (CDKs). A key regulatory ev...
The mitosis-to-endocycle transition requires the controlled inactivation of M phase-associated cycli...
Exit from the mitotic cell cycle and initiation of cell differentiation frequently coincides with th...
The cell cycle consists of a series of events, including replication and segregation of the genome, ...
AbstractPostembryonic development of plant organs requires a constant interplay between the cell cyc...
A-type cyclin-dependent kinases (CDKs), also known as cdc2, are central to the orderly progression o...
Two mitotic cyclin types, cyclin A and B, exist in higher eukaryotes, but their specialised function...
© 2020 American Society of Plant Biologists. All rights reserved. Endoreplication, also known as end...
Two mitotic cyclin types, cyclin A and B, exist in higher eukaryotes, but their specialised function...
The cell cycle is driven by the activity of cyclin-dependent kinase (CDK)–cyclin complexes. Therefor...
Progression through the cell cycle relies on activity of cyclin-dependent kinases (CDKs) and their r...
DNA replication and mitosis are dependent on the activity of cyclin-dependent protein kinase (CDK) e...
Not AvailableCyclin‐dependent kinases (CDKs) are involved in the control of cell cycle progression. ...
AbstractIn higher eukaryotes, Cdk2 kinase plays an essential role in regulating the G1–S transition....
Cell proliferation is the main driving force for plant growth. Although genome sequence analysis rev...
Entry into mitosis is universally controlled by cyclin-dependent kinases (CDKs). A key regulatory ev...
The mitosis-to-endocycle transition requires the controlled inactivation of M phase-associated cycli...
Exit from the mitotic cell cycle and initiation of cell differentiation frequently coincides with th...
The cell cycle consists of a series of events, including replication and segregation of the genome, ...
AbstractPostembryonic development of plant organs requires a constant interplay between the cell cyc...
A-type cyclin-dependent kinases (CDKs), also known as cdc2, are central to the orderly progression o...
Two mitotic cyclin types, cyclin A and B, exist in higher eukaryotes, but their specialised function...
© 2020 American Society of Plant Biologists. All rights reserved. Endoreplication, also known as end...
Two mitotic cyclin types, cyclin A and B, exist in higher eukaryotes, but their specialised function...
The cell cycle is driven by the activity of cyclin-dependent kinase (CDK)–cyclin complexes. Therefor...
Progression through the cell cycle relies on activity of cyclin-dependent kinases (CDKs) and their r...
DNA replication and mitosis are dependent on the activity of cyclin-dependent protein kinase (CDK) e...
Not AvailableCyclin‐dependent kinases (CDKs) are involved in the control of cell cycle progression. ...
AbstractIn higher eukaryotes, Cdk2 kinase plays an essential role in regulating the G1–S transition....
Cell proliferation is the main driving force for plant growth. Although genome sequence analysis rev...
Entry into mitosis is universally controlled by cyclin-dependent kinases (CDKs). A key regulatory ev...