SummaryCdc14 phosphatase is an important regulator of mitosis in budding yeast [1]. Cdc14 antagonizes cyclin-dependent kinases and promotes multiple postmetaphase events, including segregation of the ribosomal RNA gene array (rDNA) and the nucleolus assembled around this gene cluster [2–6]. During most of the cell cycle, Cdc14 is anchored to the nucleolus and kept inactive by binding to Net1 (also known as Cfi1) [7–9]. Cdc14 and Net1 are part of a larger nucleolar-protein network, which also contains the Net1-related protein Tof2 [10–12]. Tof2 contributes to the transcriptional silencing of rDNA regions [12], but the precise cellular and molecular functions of Tof2 remain unclear. Here, we report that, like Net1, Tof2 can bind to Cdc14 dire...
Cdc14 is a dual specificity phosphatase that is involved in coordinating chromosome segregation and ...
Cdc14 is a protein phosphatase from budding yeast whose activity is required for cells to end mitosi...
Cdc14 was first identified as an essential regu-lator for mitotic exit in the budding yeast Saccharo...
SummaryCdc14 phosphatase is an important regulator of mitosis in budding yeast [1]. Cdc14 antagonize...
Cdc14 phosphatase regulates multiple events during an-aphase and is essential for mitotic exit in bu...
International audienceCdc14, a dual-specificity protein phosphatase, has been previously implicated ...
The nucleolus plays a pivotal role in multiple key cellular processes. An illustrative example is th...
The nucleolus plays a pivotal role in multiple key cellular processes. An illustrative example is th...
An association with the protein Net1 controls Cdc14 regulation in budding yeast. Net1 is a competiti...
Kinases and phosphatases regulate messenger RNA synthesis through post-translational modification of...
Kinases and phosphatases regulate messenger RNA synthesis through post-translational modification of...
AbstractExit from mitosis in budding yeast requires a group of essential proteins—including the GTPa...
AbstractBudding yeast Cdc14 phosphatase plays essential roles in mitotic exit. Cdc14 is sequestered ...
The nucleolus plays a pivotal role in multiple key cellular processes. An illustrative example is th...
AbstractChromosome segregation is triggered by the cleavage of cohesins by separase. Here we show th...
Cdc14 is a dual specificity phosphatase that is involved in coordinating chromosome segregation and ...
Cdc14 is a protein phosphatase from budding yeast whose activity is required for cells to end mitosi...
Cdc14 was first identified as an essential regu-lator for mitotic exit in the budding yeast Saccharo...
SummaryCdc14 phosphatase is an important regulator of mitosis in budding yeast [1]. Cdc14 antagonize...
Cdc14 phosphatase regulates multiple events during an-aphase and is essential for mitotic exit in bu...
International audienceCdc14, a dual-specificity protein phosphatase, has been previously implicated ...
The nucleolus plays a pivotal role in multiple key cellular processes. An illustrative example is th...
The nucleolus plays a pivotal role in multiple key cellular processes. An illustrative example is th...
An association with the protein Net1 controls Cdc14 regulation in budding yeast. Net1 is a competiti...
Kinases and phosphatases regulate messenger RNA synthesis through post-translational modification of...
Kinases and phosphatases regulate messenger RNA synthesis through post-translational modification of...
AbstractExit from mitosis in budding yeast requires a group of essential proteins—including the GTPa...
AbstractBudding yeast Cdc14 phosphatase plays essential roles in mitotic exit. Cdc14 is sequestered ...
The nucleolus plays a pivotal role in multiple key cellular processes. An illustrative example is th...
AbstractChromosome segregation is triggered by the cleavage of cohesins by separase. Here we show th...
Cdc14 is a dual specificity phosphatase that is involved in coordinating chromosome segregation and ...
Cdc14 is a protein phosphatase from budding yeast whose activity is required for cells to end mitosi...
Cdc14 was first identified as an essential regu-lator for mitotic exit in the budding yeast Saccharo...