Abstract Background The Mitotic Exit Network (MEN) proteins – including the protein kinase Cdc15 and the protein phosphatase Cdc14 – are essential for exit from mitosis in Saccharomyces cerevisiae. To identify downstream targets of the MEN, we sought telophase arrest bypassed (tab) mutations that bypassed the essential requirement for CDC15. Previous studies identified net1tab2-1 and CDC14TAB6-1 as mutations in the RENT complex subunits Net1 and Cdc14, respectively, and revealed that the MEN acts by promoting release of Cdc14 from its nucleolar Net1 anchor during anaphase. However, the remaining tab mutants were not characterized. Results Fourteen out of fifteen tab mutants were mapped to three recessive (tab1-tab3) and three dominant (TAB5...
Background: In S. cerevisiae, the mitotic exit network (MEN) proteins, including the Polo-like prote...
AbstractThe release of Cdc14 from the nucleolus occurs in two waves in early and late anaphase, cont...
In Saccharomyces cerevisiae, Cdc13 binds telomeric DNA to recruit telomerase and to "cap" chromosome...
Background: The Mitotic Exit Network (MEN) proteins – including the protein kinase Cdc15 and the pro...
Background: The Mitotic Exit Network (MEN) proteins – including the protein kinase Cdc15 and the pro...
At the latest stages of their cell cycle, cells carry out crucial processes for the correct segregat...
AbstractBudding yeast Cdc14 phosphatase plays essential roles in mitotic exit. Cdc14 is sequestered ...
AbstractExit from mitosis in budding yeast requires a group of essential proteins—including the GTPa...
AbstractExit from mitosis in budding yeast requires a group of essential proteins—including the GTPa...
Exit from mitosis is characterized by a precipitous decline in cyclin-dependent kinase (Cdk) activit...
Mitotic exit is a critical cell cycle transition that requires the careful coordination of nuclear p...
AbstractBudding yeast Cdc14 phosphatase plays essential roles in mitotic exit. Cdc14 is sequestered ...
Exit from mitosis is characterized by a precipitous decline in cyclin-dependent kinase (Cdk) activit...
When chromosomal DNA is damaged, progression through the cell cycle is halted to provide the cells w...
<div><p>When chromosomal DNA is damaged, progression through the cell cycle is halted to provide the...
Background: In S. cerevisiae, the mitotic exit network (MEN) proteins, including the Polo-like prote...
AbstractThe release of Cdc14 from the nucleolus occurs in two waves in early and late anaphase, cont...
In Saccharomyces cerevisiae, Cdc13 binds telomeric DNA to recruit telomerase and to "cap" chromosome...
Background: The Mitotic Exit Network (MEN) proteins – including the protein kinase Cdc15 and the pro...
Background: The Mitotic Exit Network (MEN) proteins – including the protein kinase Cdc15 and the pro...
At the latest stages of their cell cycle, cells carry out crucial processes for the correct segregat...
AbstractBudding yeast Cdc14 phosphatase plays essential roles in mitotic exit. Cdc14 is sequestered ...
AbstractExit from mitosis in budding yeast requires a group of essential proteins—including the GTPa...
AbstractExit from mitosis in budding yeast requires a group of essential proteins—including the GTPa...
Exit from mitosis is characterized by a precipitous decline in cyclin-dependent kinase (Cdk) activit...
Mitotic exit is a critical cell cycle transition that requires the careful coordination of nuclear p...
AbstractBudding yeast Cdc14 phosphatase plays essential roles in mitotic exit. Cdc14 is sequestered ...
Exit from mitosis is characterized by a precipitous decline in cyclin-dependent kinase (Cdk) activit...
When chromosomal DNA is damaged, progression through the cell cycle is halted to provide the cells w...
<div><p>When chromosomal DNA is damaged, progression through the cell cycle is halted to provide the...
Background: In S. cerevisiae, the mitotic exit network (MEN) proteins, including the Polo-like prote...
AbstractThe release of Cdc14 from the nucleolus occurs in two waves in early and late anaphase, cont...
In Saccharomyces cerevisiae, Cdc13 binds telomeric DNA to recruit telomerase and to "cap" chromosome...