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p34cdc2-mediated phosphorylation at T124 inhibits nuclear import of SV-40 T antigen proteins
D A Jans1, M J Ackermann, J R Bischoff
1Max-Planck-Institut für Biophysik, Frankfurt, Germany.
Abstract:
The nuclear import of transcription regulatory proteins appears to be used by the cell to trigger transitions in cell cycle, morphogenesis, and transformation. We have previously observed that the rate at which SV-40 T antigen fusion proteins containing a functional nuclear localization sequence (NLS; residues 126-132) are imported into the nucleus is enhanced in the presence of the casein kinase II (CK-II) site S111/112. In this study purified p34cdc2 kinase was used to phosphorylate T antigen proteins specifically at T124 and kinetic measurements at the single-cell level performed to assess its effect on nuclear protein import. T124 phosphorylation, which could be functionally simulated by a T-to-D124 substitution, was found to reduce the maximal extent of nuclear accumulation whilst negligibly affecting the import rate. The inhibition of nuclear import depended on the stoichiometry of phosphorylation. T124 and S111/112 could be phosphorylated independently of one another. Two alternative mechanisms were considered to explain the inhibition of nuclear import by T124 phosphorylation: inactivation of the NLS and cytoplasmic retention, respectively. Furthermore, we speculate that in vivo T124 phosphorylation may regulate the small but functionally significant amount of cytoplasmic SV-40 T antigen. A sequence comparison showed that many transcription regulatory proteins contain domains comprising potential CK-II-sites, cdc2-sites, and NLS. This raises the possibility that the three elements represent a functional unit regulating nuclear protein import.
Insights
Phosphorylation of SV-40 T antigen at T124 by p34cdc2 kinase inhibits nuclear import by reducing accumulation, not import rate. This suggests a regulatory mechanism for cytoplasmic protein levels.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Nuclear import of regulatory proteins controls cell cycle and morphogenesis.
- Casein kinase II (CK-II) phosphorylation at S111/112 enhances SV-40 T antigen nuclear import.
- p34cdc2 kinase is a key regulator of cell cycle transitions.
Purpose of the Study:
- To investigate the effect of p34cdc2 kinase-mediated phosphorylation of SV-40 T antigen at T124 on nuclear protein import.
- To elucidate the mechanism by which T124 phosphorylation affects nuclear accumulation and import rates.
- To explore the potential role of T124 phosphorylation in regulating cytoplasmic SV-40 T antigen levels.
Main Methods:
- Purification of p34cdc2 kinase.
- Phosphorylation of SV-40 T antigen proteins specifically at T124.
- Single-cell level kinetic measurements of nuclear protein import.
- Sequence comparison of transcription regulatory proteins.
Main Results:
- Phosphorylation at T124 reduced the maximal extent of nuclear accumulation of SV-40 T antigen.
- T124 phosphorylation negligibly affected the nuclear import rate.
- The inhibition of nuclear import was dependent on the stoichiometry of phosphorylation.
- T124 and S111/112 phosphorylation sites could be independently phosphorylated.
Conclusions:
- T124 phosphorylation by p34cdc2 kinase inhibits nuclear import, likely through NLS inactivation or cytoplasmic retention.
- In vivo T124 phosphorylation may regulate the functional amount of cytoplasmic SV-40 T antigen.
- Domains with CK-II sites, cdc2 sites, and NLS may form a functional unit for regulating nuclear protein import.