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Multisite phosphorylation networks as signal processors for Cdk1.


ABSTRACT: The order and timing of cell-cycle events is controlled by changing substrate specificity and different activity thresholds of cyclin-dependent kinases (CDKs). However, it is not understood how a single protein kinase can trigger hundreds of switches in a sufficiently time-resolved fashion. We show that cyclin-Cdk1-Cks1-dependent phosphorylation of multisite targets in Saccharomyces cerevisiae is controlled by key substrate parameters including distances between phosphorylation sites, distribution of serines and threonines as phosphoacceptors and positioning of cyclin-docking motifs. The component mediating the key interactions in this process is Cks1, the phosphoadaptor subunit of the cyclin-Cdk1-Cks1 complex. We propose that variation of these parameters within networks of phosphorylation sites in different targets provides a wide range of possibilities for differential amplification of Cdk1 signals, thus providing a mechanism to generate a wide range of thresholds in the cell cycle.

SUBMITTER: Koivomagi M 

PROVIDER: S-EPMC3855452 | biostudies-literature | 2013 Dec

REPOSITORIES: biostudies-literature

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Multisite phosphorylation networks as signal processors for Cdk1.

Kõivomägi Mardo M   Ord Mihkel M   Iofik Anna A   Valk Ervin E   Venta Rainis R   Faustova Ilona I   Kivi Rait R   Balog Eva Rose M ER   Rubin Seth M SM   Loog Mart M  

Nature structural & molecular biology 20131103 12


The order and timing of cell-cycle events is controlled by changing substrate specificity and different activity thresholds of cyclin-dependent kinases (CDKs). However, it is not understood how a single protein kinase can trigger hundreds of switches in a sufficiently time-resolved fashion. We show that cyclin-Cdk1-Cks1-dependent phosphorylation of multisite targets in Saccharomyces cerevisiae is controlled by key substrate parameters including distances between phosphorylation sites, distributi  ...[more]

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