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Showing 1 to 4 of 4 for “"Cdc14 release"”.

  1. Mitotic Exit Control in Budding Yeast: Regulators and Dynamics

    <p>In budding yeast, the phosphatase Cdc14 is released from nucleolus to promote mitotic exit (ME). Cdc14 release and ME is controlled by mitotic cyclin-Cdk oscillation, the FEAR network including a non-proteolytic function of separase (Esp1), and the Mitotic Exit Network (MEN) indirectly activated …

    rockefeller Repository record for Mitotic Exit Control in Budding Yeast: Regulators and Dynamics (opens in a new tab)

  2. REGULATION OF CHROMOSOME SEGREGATION BY CONSERVED PHOSPHATASE CDC14 AND KINASE CDC5

    … from mitosis require the protein phosphatase Cdc14 whose activation relies on two consecutive protein pathways, the FEAR network and the MEN. As the polo-like kinase Cdc5 is a component of both pathways its activity is essential to Cdc14 release and in its absence Cdc14 is never released. By …

    milano Repository record for REGULATION OF CHROMOSOME SEGREGATION BY CONSERVED PHOSPHATASE CDC14 AND KINASE CDC5 (opens in a new tab)

  3. Mechanisms underlying spatial control of exit from mitosis

    … In contradiction to these results, I find that Cdc14 release is responsible for the loss of cMT-budneck interactions that precede inappropriate exit from mitosis. Lastly, through the generation of cells with two nuclei, I show that the coupling of spindle position to exit from mitosis is …

    mit Repository record for Mechanisms underlying spatial control of exit from mitosis (opens in a new tab)

  4. Role of Ame1, a central component of the Saccharomyces cerevisiae kinetochore, in kinetochore function and structure

    … of spindle poles occurs in absence of Esp1 and Cdc14 activity. Following experimental evidence suggests that the spindle defect in ame1-2 is not due to the above mentioned causes, but rather results from an alternative function of the kinetochore that is compromised in the mutant in a cell cycle …

    heid-diss Repository record for Role of Ame1, a central component of the Saccharomyces cerevisiae kinetochore, in kinetochore function and structure (opens in a new tab)