EG5 (KIF11) is a member of the kinesin-like protein family involved in centrosome separation and bipolar spindle formation. When a cell enters mitosis, CDK1 phosphorylates EG5 at Thr926 and promotes EG5 localization on the mitotic spindle which drives bipolar spindle formation. EG5 provides power for spindle movement and thus controls the dynamics of spindle assembly. However, little is known about EG5 regulation or how EG5 detaches from the spindle upon mitotic exit. In this study we identify EG5 as a novel substrate of PP2A phosphatase, and we show that the PP2A/B55a complex plays an important role in mitotic exit by a mechanism involving EG5. The PP2A/B55a complex physically associates with the EG5 C-terminal tail domain and dephosphoryl...
Entry into mitosis is driven by the phosphorylation of thousands of substrates, under the master con...
Exit from mitosis in budding yeast is triggered by activation of the key mitotic phosphatase Cdc14. ...
Author Posting. © The Authors, 2010. This is the author's version of the work. It is posted here by...
AbstractWe have isolated a human homolog of Xenopus Eg5, a kinesin-related motor protein implicated ...
When vertebrate cells exit mitosis various cellular structures are re-organized to build functional ...
When vertebrate cells exit mitosis various cellular structures are re-organized to build functional ...
We have isolated a human homolog of Xenopus Eg5, a kinesin-related motor protein implicated in the a...
When vertebrate cells exit mitosis various cellular structures are re-organized to build functional ...
Progression through the phases of the cell cycle (G1, S, G2, and mitosis) is largely driven by the c...
During mitosis, the vertebrate cell nucleus undergoes profound changes in architecture. At the onset...
In budding yeast, a surveillance mechanism known as the spindle position checkpoint (SPOC) ensures a...
Here, we will review the evidence showing that mitotic exit is initiated by regulated proteolysis an...
Architectural integrity of the mitotic spindle is required for efficient chromosome congression and ...
<div><p>Entry into mitosis is triggered by activation of Cdk1 and inactivation of its counteracting ...
Entry into mitosis is triggered by activation of Cdk1 and inactivation of its counteracting phosphat...
Entry into mitosis is driven by the phosphorylation of thousands of substrates, under the master con...
Exit from mitosis in budding yeast is triggered by activation of the key mitotic phosphatase Cdc14. ...
Author Posting. © The Authors, 2010. This is the author's version of the work. It is posted here by...
AbstractWe have isolated a human homolog of Xenopus Eg5, a kinesin-related motor protein implicated ...
When vertebrate cells exit mitosis various cellular structures are re-organized to build functional ...
When vertebrate cells exit mitosis various cellular structures are re-organized to build functional ...
We have isolated a human homolog of Xenopus Eg5, a kinesin-related motor protein implicated in the a...
When vertebrate cells exit mitosis various cellular structures are re-organized to build functional ...
Progression through the phases of the cell cycle (G1, S, G2, and mitosis) is largely driven by the c...
During mitosis, the vertebrate cell nucleus undergoes profound changes in architecture. At the onset...
In budding yeast, a surveillance mechanism known as the spindle position checkpoint (SPOC) ensures a...
Here, we will review the evidence showing that mitotic exit is initiated by regulated proteolysis an...
Architectural integrity of the mitotic spindle is required for efficient chromosome congression and ...
<div><p>Entry into mitosis is triggered by activation of Cdk1 and inactivation of its counteracting ...
Entry into mitosis is triggered by activation of Cdk1 and inactivation of its counteracting phosphat...
Entry into mitosis is driven by the phosphorylation of thousands of substrates, under the master con...
Exit from mitosis in budding yeast is triggered by activation of the key mitotic phosphatase Cdc14. ...
Author Posting. © The Authors, 2010. This is the author's version of the work. It is posted here by...