Ubiquitylation of Cyclin E Requires the Sequential Function of SCF Complexes Containing Distinct hCdc4 Isoforms
pmid: 16818231
Ubiquitylation of Cyclin E Requires the Sequential Function of SCF Complexes Containing Distinct hCdc4 Isoforms
Cyclin E, an activator of cyclin-dependent kinase 2 (Cdk2), is targeted for proteasomal degradation by phosphorylation-dependent multiubiquitylation via the ubiquitin ligase SCF(hCdc4). SCF ubiquitin ligases are composed of a core of conserved subunits and one variable subunit (an F box protein) involved in substrate recognition. We show here that multiubiquitylation of cyclin E requires the sequential function of two distinct splice variant isoforms of the F box protein hCdc4 known as alpha and gamma. SCF(hCdc4alpha) binds a complex containing cyclin E, Cdk2, and the prolyl cis/trans isomerase Pin1 and promotes the activity of Pin1 without directly ubiquitylating cyclin E. However, due to the action of this SCF(hCdc4alpha)-Pin1 complex, cyclin E becomes an efficient ubiquitylation substrate of SCF(hCdc4gamma). Furthermore, in the context of Cdc4alpha and cyclin E, mutational data suggest that Pin1 isomerizes a noncanonical proline-proline bond, with the possibility that Cdc4alpha may serve as a cofactor for altering the specificity of Pin1.
- Scripps Research Institute United States
- Duke University United States
- Duke Medical Center United States
- Duke University Health System United States
- Duke University Hospital United States
Binding Sites, F-Box-WD Repeat-Containing Protein 7, SKP Cullin F-Box Protein Ligases, Ubiquitin, F-Box Proteins, Ubiquitin-Protein Ligases, Cell Cycle Proteins, Cell Biology, Peptidylprolyl Isomerase, Models, Biological, Cell Line, Isoenzymes, NIMA-Interacting Peptidylprolyl Isomerase, Cyclin E, Mutation, Humans, Gene Silencing, Molecular Biology
Binding Sites, F-Box-WD Repeat-Containing Protein 7, SKP Cullin F-Box Protein Ligases, Ubiquitin, F-Box Proteins, Ubiquitin-Protein Ligases, Cell Cycle Proteins, Cell Biology, Peptidylprolyl Isomerase, Models, Biological, Cell Line, Isoenzymes, NIMA-Interacting Peptidylprolyl Isomerase, Cyclin E, Mutation, Humans, Gene Silencing, Molecular Biology
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