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Updated: May 15, 2026

Identification of Cyclin-dependent Kinase 1 Specific Phosphorylation Sites by an In Vitro Kinase Assay
Published on: May 3, 2018
Removal of centrosomal PP1 by NIMA kinase unlocks the MPF feedback loop to promote mitotic commitment in S. pombe
Agnes Grallert1, Kuan Yoow Chan, Maria-Luisa Alonso-Nuñez
1CRUK Cell Division Group, Paterson Institute for Cancer Research, University of Manchester, Wilmslow Road, Manchester M20 4BX, UK.
Background:
Activation of the Cdk1/cyclin B complex, also known as mitosis-promoting factor (MPF), drives commitment to mitosis. Interphase MPF is inhibited through phosphorylation of Cdk1 by Wee1-related kinases. Because Cdc25 phosphatases remove this phosphate, Cdc25 activity is an essential part of the switch that drives cells into mitosis. The generation of a critical "trigger" of active MPF promotes a positive feedback loop that employs Polo kinase to boost Cdc25 activity and inhibit Wee1, thereby ensuring that mitotic commitment is a bistable switch. Mutations in the spindle pole body (SPB) component Cut12 suppress otherwise lethal deficiencies in Cdc25.
Results:
Cut12 harbors a bipartite protein phosphatase 1 (PP1) docking domain. Mutation of either element alone suppressed the temperature-dependent lethality of cdc25.22, whereas simultaneous ablation of both allowed cells to divide in the complete absence of Cdc25. Late G2 phase phosphorylation between the two elements by MPF and the NIMA kinase Fin1 blocked PP1(Dis2) recruitment, thereby promoting recruitment of Polo to Cut12 and the SPB and elevating global Polo kinase activity throughout the cell.
Conclusions:
PP1 recruitment to Cut12 sets a threshold for Polo's feedback-loop activity that locks the cell in interphase until Cdc25 pushes MPF activity through this barrier to initiate mitosis. We propose that events on the SPB (and, by inference, the centrosome) integrate inputs from diverse signaling networks to generate a coherent decision to divide that is appropriate for the particular environmental context of each cell. PP1 recruitment sets one or more critical thresholds for single or multiple local events within this switch.
Insights
Protein phosphatase 1 (PP1) recruitment to the spindle pole body (SPB) component Cut12 establishes a threshold for mitotic entry. This threshold ensures cells delay mitosis until Cdc25 activity overcomes inhibition, regulating the cell cycle switch.
Area of Science:
- Cell biology
- Molecular biology
- Biochemistry
Background:
- Mitosis commitment is driven by Cdk1/cyclin B (MPF) activation.
- Wee1-related kinases inhibit interphase MPF via Cdk1 phosphorylation.
- Cdc25 phosphatases remove inhibitory phosphates, essential for mitotic entry.
Purpose of the Study:
- Investigate the role of Cut12 in regulating the cell cycle switch to mitosis.
- Determine how spindle pole body (SPB) components influence mitotic commitment.
- Elucidate the mechanism by which Cdc25 deficiencies are suppressed by Cut12 mutations.
Main Methods:
- Genetic analysis of Cut12 mutations in yeast.
- Biochemical assays to study protein-protein interactions and phosphorylation.
- Microscopy to observe protein localization and cell division.
Main Results:
- Cut12 possesses a bipartite protein phosphatase 1 (PP1) docking domain.
- Mutations in Cut12's PP1 docking sites suppressed lethal cdc25 mutations.
- Complete loss of Cdc25 function was tolerated when both PP1 docking sites were abolished.
- MPF and Fin1 phosphorylation of Cut12 inhibited PP1 recruitment, promoting Polo kinase recruitment and activity.
Conclusions:
- PP1 recruitment to Cut12 sets a threshold for Polo kinase feedback, maintaining interphase.
- Cdc25 activity must overcome this PP1-mediated threshold to initiate mitosis.
- SPB events integrate signaling networks to ensure timely and context-appropriate cell division.
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