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Mitosis-specific phosphorylation of polyomavirus middle-sized tumor antigen and its role during cell transformation
L Pérez1, A Paasinen, B Schnierle
1Friedrich Miescher-Institute, Basel, Switzerland.
Abstract:
Transformation of cells in culture by polyomavirus is mediated by one of its early gene products, middle-sized tumor antigen (MTAg). This protein forms multiple complexes with cellular enzymes such as tyrosine kinases (pp60c-src), a phosphatidylinositol 3-kinase, and phosphatase 2A. Association with MTAg leads to the activation of pp60c-src through interference with phosphorylation at Tyr-527, a site negatively regulating src kinase activity. MTAg abrogates mitosis-specific activation of pp60c-src, resulting in constitutive high kinase activity of the enzyme throughout all phases of the cell cycle. Here we report that MTAg is transiently modified during mitosis, resulting in an increase in its apparent molecular size on SDS/acrylamide gels. Similarly, MTAg isolated from interphase cells and phosphorylated by the cell cycle-regulated serine/threonine kinase p34cdc2 in vitro has increased molecular mass. The large molecular mass form of the protein can be converted to the authentic 56-kDa form upon dephosphorylation by potato acid phosphatase. Two putative phosphorylation sites for a cdc2-like kinase were identified as Thr-160 and -291, respectively. Conversion of Thr-160 to Ala resulted in a transformation-defective mutant protein that was still capable of associating with pp60c-src, phosphatidylinositol 3-kinase, and phosphatase 2A, while the corresponding mutant in position 291 was wild type with respect to all parameters measured so far. These data suggest that phosphorylation by p34cdc2 or a related cell cycle-regulated kinase modulates the interaction of MTAg with cellular targets that are crucial for cell transformation.
Insights
Polyomavirus middle-sized tumor antigen (MTAg) phosphorylation by p34cdc2 kinase regulates its interaction with cellular targets, impacting cell transformation. This modification is crucial for MTAg
Area of Science:
- Molecular Biology
- Cell Biology
- Virology
Background:
- Polyomavirus middle-sized tumor antigen (MTAg) mediates cell transformation.
- MTAg interacts with cellular kinases like pp60c-src, phosphatidylinositol 3-kinase, and phosphatase 2A.
- MTAg binding activates pp60c-src by inhibiting negative regulatory phosphorylation.
Purpose of the Study:
- To investigate the cell cycle-dependent modification of MTAg.
- To determine the role of p34cdc2 kinase in MTAg modification and function.
- To identify specific phosphorylation sites on MTAg critical for cell transformation.
Main Methods:
- Analysis of MTAg molecular mass during mitosis and in vitro phosphorylation.
- Dephosphorylation assays using potato acid phosphatase.
- Site-directed mutagenesis to identify phosphorylation sites (Thr-160 and Thr-291).
- Assays to evaluate the binding of mutant MTAg to cellular targets and its transformation activity.
Main Results:
- MTAg undergoes transient modification during mitosis, increasing its apparent molecular mass.
- In vitro phosphorylation of MTAg by p34cdc2 kinase also increases its molecular mass.
- Phosphorylation sites at Thr-160 and Thr-291 were identified.
- Mutation of Thr-160 to alanine abolished transformation but retained binding to cellular partners, while mutation at Thr-291 had no effect.
Conclusions:
- Phosphorylation of MTAg by p34cdc2 or related kinases is a key event in cell cycle regulation.
- This phosphorylation event modulates MTAg interactions with cellular targets essential for transformation.
- The Thr-160 site is critical for MTAg-mediated cell transformation, likely by affecting interactions with key cellular proteins.