The phospho-occupancy of an atypical SLIMB-binding site on PERIOD that is phosphorylated by DOUBLETIME controls the pace of the clock
Open Access
- 1 July 2008
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 22 (13) , 1758-1772
- https://doi.org/10.1101/gad.1682708
Abstract
A common feature of animal circadian clocks is the progressive phosphorylation of PERIOD (PER) proteins, which is highly dependent on casein kinase Iδ/ε (CKIδ/ε; termed DOUBLETIME [DBT] in Drosophila) and ultimately leads to the rapid degradation of hyperphosphorylated isoforms via a mechanism involving the F-box protein, β-TrCP (SLIMB in Drosophila). Here we use the Drosophila melanogaster model system, and show that a key step in controlling the speed of the clock is phosphorylation of an N-terminal Ser (S47) by DBT, which collaborates with other nearby phosphorylated residues to generate a high-affinity atypical SLIMB-binding site on PER. DBT-dependent increases in the phospho-occupancy of S47 are temporally gated, dependent on the centrally located DBT docking site on PER and partially counterbalanced by protein phosphatase activity. We propose that the gradual DBT-mediated phosphorylation of a nonconsensus SLIMB-binding site establishes a temporal threshold for when in a daily cycle the majority of PER proteins are tagged for rapid degradation. Surprisingly, most of the hyperphosphorylation is unrelated to direct effects on PER stability. We also use mass spectrometry to map phosphorylation sites on PER, leading to the identification of a number of “phospho-clusters” that explain several of the classic per mutants.Keywords
This publication has 65 references indexed in Scilit:
- Drosophila DBT Lacking Protein Kinase Activity Produces Long-Period and Arrhythmic Circadian Behavioral and Molecular RhythmsMolecular and Cellular Biology, 2007
- Protein kinase A and casein kinases mediate sequential phosphorylation events in the circadian negative feedback loopGenes & Development, 2007
- Regulation of Ci-SCFSlimb Binding, Ci Proteolysis, and Hedgehog Pathway Activity by Ci PhosphorylationDevelopmental Cell, 2007
- Post-translational regulation of the Drosophila circadian clock requires protein phosphatase 1 (PP1)Genes & Development, 2007
- Modeling of a Human Circadian Mutation Yields Insights into Clock Regulation by PER2Cell, 2007
- Differential effects of PER2 phosphorylation: molecular basis for the human familial advanced sleep phase syndrome (FASPS)Genes & Development, 2006
- Balance between DBT/CKIε kinase and protein phosphatase activities regulate phosphorylation and stability of Drosophila CLOCK proteinProceedings of the National Academy of Sciences, 2006
- Structure of a β-TrCP1-Skp1-β-Catenin ComplexMolecular Cell, 2003
- Posttranslational Mechanisms Regulate the Mammalian Circadian ClockPublished by Elsevier ,2001
- Multisite phosphorylation of a CDK inhibitor sets a threshold for the onset of DNA replicationNature, 2001