Interactions between Casein Kinase Iε (CKIε) and Two Substrates from Disparate Signaling Pathways Reveal Mechanisms for Substrate-Kinase Specificity
Interactions between Casein Kinase Iε (CKIε) and Two Substrates from Disparate Signaling Pathways Reveal Mechanisms for Substrate-Kinase Specificity
Members of the Casein Kinase I (CKI) family of serine/threonine kinases regulate diverse biological pathways. The seven mammalian CKI isoforms contain a highly conserved kinase domain and divergent amino- and carboxy-termini. Although they share a preferred target recognition sequence and have overlapping expression patterns, individual isoforms often have specific substrates. In an effort to determine how substrates recognize differences between CKI isoforms, we have examined the interaction between CKIepsilon and two substrates from different signaling pathways.CKIepsilon, but not CKIalpha, binds to and phosphorylates two proteins: Period, a transcriptional regulator of the circadian rhythms pathway, and Disheveled, an activator of the planar cell polarity pathway. We use GST-pull-down assays data to show that two key residues in CKIalpha's kinase domain prevent Disheveled and Period from binding. We also show that the unique C-terminus of CKIepsilon does not determine Dishevelled's and Period's preference for CKIepsilon nor is it essential for binding, but instead plays an auxillary role in stabilizing the interactions of CKIepsilon with its substrates. We demonstrate that autophosphorylation of CKIepsilon's C-terminal tail prevents substrate binding, and use mass spectrometry and chemical crosslinking to reveal how a phosphorylation-dependent interaction between the C-terminal tail and the kinase domain prevents substrate phosphorylation and binding.The biochemical interactions between CKIepsilon and Disheveled, Period, and its own C-terminus lead to models that explain CKIepsilon's specificity and regulation.
- University of Washington United States
- University of Mary United States
Casein Kinase 1 epsilon, Science, Xenopus, Q, R, Dishevelled Proteins, Intracellular Signaling Peptides and Proteins, Casein Kinase Ialpha, Period Circadian Proteins, Xenopus Proteins, Phosphoproteins, Substrate Specificity, Mice, Medicine, Animals, Protein Isoforms, Phosphorylation, Research Article, Adaptor Proteins, Signal Transducing, Signal Transduction
Casein Kinase 1 epsilon, Science, Xenopus, Q, R, Dishevelled Proteins, Intracellular Signaling Peptides and Proteins, Casein Kinase Ialpha, Period Circadian Proteins, Xenopus Proteins, Phosphoproteins, Substrate Specificity, Mice, Medicine, Animals, Protein Isoforms, Phosphorylation, Research Article, Adaptor Proteins, Signal Transducing, Signal Transduction
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