Precise timing of cell division is achieved by coupling waves of cyclin-dependent kinase (Cdk) activity with a transcriptional oscillator throughout cell cycle progression. Although details of transcription of cyclin genes are known, it is unclear which is the transcriptional cascade that modulates their expression in a timely fashion. Here, we demonstrate that a Clb/Cdk1-mediated regulation of the Fkh2 transcription factor synchronizes the temporal mitotic CLB expression in budding yeast. A simplified kinetic model of the cyclin/Cdk network predicts a linear cascade where a Clb/Cdk1-mediated regulation of an activator molecule drives CLB3 and CLB2 expression. Experimental validation highlights Fkh2 as modulator of CLB3 transcript levels, b...
The Forkhead box family of transcription factors is evolutionary conserved from yeast to higher euka...
In the budding yeast Saccharomyces cerevisiae, the mitotic cell cycle is regulated by the cyclin-dep...
AbstractRecent studies in Saccharomyces cerevisiae by using global approaches have significantly enh...
Precise timing of cell division is achieved by coupling waves of cyclin-dependent kinase (Cdk) activ...
AbstractThe cell division cycle requires oscillations in activity of B-type cyclin (Clb)-Cdk1 kinase...
Diverse mitotic events can be triggered in the correct order and time by a single cyclin-CDK. A sing...
Temporal changes in transcription programs are coupled to control of cell growth and division. We he...
Cell-cycle progression is driven by the phosphorylation of cyclin-dependent kinase (Cdk) substrates....
Diverse mitotic events can be triggered in the correct order and time by a single cyclin-CDK. A sing...
Temporal changes in transcription programs are coupled to control of cell growth and division. We he...
AbstractBackground: Cyclins and cyclin-dependent kinases induce and coordinate the events of the cel...
<p>Models for the control of global cell-cycle transcription have advanced from a CDK-APC/C oscillat...
Some biological networks exhibit oscillations in their components to convert stimuli to time-depende...
In budding yeast, synchronization of waves of mitotic cyclins that activate the Cdk1 kinase occur th...
AbstractThe stage-specific activation of cyclin-dependent kinases controls the order and timing of c...
The Forkhead box family of transcription factors is evolutionary conserved from yeast to higher euka...
In the budding yeast Saccharomyces cerevisiae, the mitotic cell cycle is regulated by the cyclin-dep...
AbstractRecent studies in Saccharomyces cerevisiae by using global approaches have significantly enh...
Precise timing of cell division is achieved by coupling waves of cyclin-dependent kinase (Cdk) activ...
AbstractThe cell division cycle requires oscillations in activity of B-type cyclin (Clb)-Cdk1 kinase...
Diverse mitotic events can be triggered in the correct order and time by a single cyclin-CDK. A sing...
Temporal changes in transcription programs are coupled to control of cell growth and division. We he...
Cell-cycle progression is driven by the phosphorylation of cyclin-dependent kinase (Cdk) substrates....
Diverse mitotic events can be triggered in the correct order and time by a single cyclin-CDK. A sing...
Temporal changes in transcription programs are coupled to control of cell growth and division. We he...
AbstractBackground: Cyclins and cyclin-dependent kinases induce and coordinate the events of the cel...
<p>Models for the control of global cell-cycle transcription have advanced from a CDK-APC/C oscillat...
Some biological networks exhibit oscillations in their components to convert stimuli to time-depende...
In budding yeast, synchronization of waves of mitotic cyclins that activate the Cdk1 kinase occur th...
AbstractThe stage-specific activation of cyclin-dependent kinases controls the order and timing of c...
The Forkhead box family of transcription factors is evolutionary conserved from yeast to higher euka...
In the budding yeast Saccharomyces cerevisiae, the mitotic cell cycle is regulated by the cyclin-dep...
AbstractRecent studies in Saccharomyces cerevisiae by using global approaches have significantly enh...