Related Experiment Videos
Phosphorylation of phosphatase inhibitor-2 at centrosomes during mitosis
Craig Leach1, Shirish Shenolikar, David L Brautigan
1Center for Cell Signaling, University of Virginia School of Medicine, Charlottesville, Virginia 22908, USA.
Abstract:
Inhibitor-2 (I-2) is a regulator of protein phosphatase type-1 (PP1), known to be phosphorylated in vitro by multiple kinases. In particular Thr72 is a Thr-Pro phosphorylation site conserved from yeast to human, but there is no evidence that this phosphorylation responds to any physiological signals. Here, we used electrophoretic mobility shift and immunoblotting with a site-specific phospho-Thr72 antibody to establish Thr72 phosphorylation in HeLa cells and show a 25-fold increase in phosphorylation during mitosis. Mass spectrometry demonstrated I-2 in actively growing HeLa cells was also phosphorylated at three other sites, Ser120, Ser121, and an additional Ser located between residues 70 and 90. In vitro kinase assays using recombinant I-2 as a substrate showed that the Thr72 kinase(s) was activated during mitosis, and sensitivity to kinase inhibitors indicated that the principal I-2 Thr72 kinase was not GSK3 but instead a member of the cyclin-dependent protein kinase family. Immunocytochemistry confirmed Thr72 phosphorylation of I-2 during mitosis, with peak intensity at prophase, and revealed subcellular concentration of the phospho-Thr72 I-2 at centrosomes. Together, the data show dynamic changes in I-2 phosphorylation during mitosis and localization of phosphorylated I-2 at centrosomes, suggesting involvement in mammalian cell division.
Insights
Inhibitor-2 (I-2) phosphorylation at Thr72 significantly increases during mitosis in HeLa cells. This dynamic phosphorylation, particularly at centrosomes, suggests I-2
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Inhibitor-2 (I-2) regulates protein phosphatase type-1 (PP1).
- Thr72 is a conserved phosphorylation site on I-2, but its physiological regulation was unknown.
Purpose of the Study:
- To investigate the dynamic phosphorylation of I-2 during the cell cycle.
- To identify the kinase responsible for Thr72 phosphorylation.
- To determine the subcellular localization of phospho-I-2 during mitosis.
Main Methods:
- Electrophoretic mobility shift assays
- Immunoblotting with phospho-specific antibodies
- Mass spectrometry
- In vitro kinase assays
- Kinase inhibitor sensitivity analysis
- Immunocytochemistry
Main Results:
- Thr72 phosphorylation of I-2 increases 25-fold during mitosis in HeLa cells.
- Mass spectrometry identified additional phosphorylation sites (Ser120, Ser121, Ser70-90).
- Mitotic activation of the Thr72 kinase, identified as a cyclin-dependent kinase family member.
- Phospho-Thr72 I-2 localizes to centrosomes during mitosis, peaking at prophase.
Conclusions:
- I-2 undergoes dynamic phosphorylation changes during mitosis.
- Cyclin-dependent kinases regulate I-2 Thr72 phosphorylation during cell division.
- Localization of phospho-I-2 at centrosomes suggests a role in mammalian cell division.