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Assaying Proteasomal Degradation in a Cell-free System in Plants
Published on: March 26, 2014
p27(Kip1) ubiquitination and degradation is regulated by the SCF(Skp2) complex through phosphorylated Thr187 in p27
L M Tsvetkov1, K H Yeh, S J Lee
1Department of Genetics, Yale University School of Medicine, 333 Cedar Street, New Haven, Connecticut 06520, USA.
Abstract:
Many tumorigenic processes affect cell-cycle progression by their effects on the levels of the cyclin-dependent kinase inhibitor p27(Kip1) [1,2]. The phosphorylation- and ubiquitination-dependent proteolysis of p27 is implicated in control of the G1-S transition in the cell cycle [3-6]. To determine the factors that control p27 stability, we established a cell-free extract assay that recapitulates the degradation of p27. Phosphorylation of p27 at Thr187 was essential for its degradation. Degradation was also dependent on SCF(Skp2), a protein complex implicated in targeting phosphorylated proteins for ubiquitination [7-10]. Immunodepletion of components of the complex - Cul-1, Skp1, or Skp2 - from the extract abolished p27 degradation, while addition of purified SCF(Skp2) to Skp2- depleted extract restored the capacity to degrade p27. A specific association was observed between Skp2 and a p27 carboxy-terminal peptide containing phosphorylated Thr187, but not between Skp2 and the non-phosphorylated peptide. Skp2-dependent associations between Skp1 or Cul-1 and the p27 phosphopeptide were also detected. Isolated SCF(Skp2) contained an E3 ubiquitin ligase activity towards p27. Our data thus suggest that SCF(Skp2) specifically targets p27 for degradation during cell-cycle progression.
Insights
The cyclin-dependent kinase inhibitor p27 (also known as Kip1) stability is controlled by phosphorylation at Thr187, which targets it for degradation by the SCF(Skp2) complex. This mechanism regulates cell-cycle progression.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Tumorigenic processes impact cell-cycle progression by altering cyclin-dependent kinase inhibitor p27 (p27Kip1) levels.
- Phosphorylation and ubiquitination-dependent proteolysis of p27 regulate the G1-S cell-cycle transition.
Purpose of the Study:
- To identify factors controlling p27 stability.
- To investigate the mechanism of p27 degradation.
Main Methods:
- Established a cell-free extract assay to study p27 degradation.
- Utilized immunodepletion and addition of purified SCF(Skp2) complex.
- Analyzed protein-peptide associations using phosphopeptides.
Main Results:
- Phosphorylation of p27 at Thr187 is essential for its degradation.
- Degradation is dependent on the SCF(Skp2) complex, which acts as an E3 ubiquitin ligase for p27.
- SCF(Skp2) specifically binds to phosphorylated p27 at Thr187.
Conclusions:
- SCF(Skp2) complex directly targets p27 for degradation.
- This targeted degradation of p27 by SCF(Skp2) is a key regulatory step in cell-cycle progression.
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