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Updated: Jun 10, 2026

MISSION esiRNA for RNAi Screening in Mammalian Cells
Published on: May 12, 2010
Live-cell imaging RNAi screen identifies PP2A-B55alpha and importin-beta1 as key mitotic exit regulators in human
Michael H A Schmitz1, Michael Held, Veerle Janssens
1Institute of Biochemistry, Swiss Federal Institute of Technology Zurich (ETHZ), Schafmattstrasse 18, CH-8093 Zurich, Switzerland.
Abstract:
When vertebrate cells exit mitosis various cellular structures are re-organized to build functional interphase cells. This depends on Cdk1 (cyclin dependent kinase 1) inactivation and subsequent dephosphorylation of its substrates. Members of the protein phosphatase 1 and 2A (PP1 and PP2A) families can dephosphorylate Cdk1 substrates in biochemical extracts during mitotic exit, but how this relates to postmitotic reassembly of interphase structures in intact cells is not known. Here, we use a live-cell imaging assay and RNAi knockdown to screen a genome-wide library of protein phosphatases for mitotic exit functions in human cells. We identify a trimeric PP2A-B55alpha complex as a key factor in mitotic spindle breakdown and postmitotic reassembly of the nuclear envelope, Golgi apparatus and decondensed chromatin. Using a chemically induced mitotic exit assay, we find that PP2A-B55alpha functions downstream of Cdk1 inactivation. PP2A-B55alpha isolated from mitotic cells had reduced phosphatase activity towards the Cdk1 substrate, histone H1, and was hyper-phosphorylated on all subunits. Mitotic PP2A complexes co-purified with the nuclear transport factor importin-beta1, and RNAi depletion of importin-beta1 delayed mitotic exit synergistically with PP2A-B55alpha. This demonstrates that PP2A-B55alpha and importin-beta1 cooperate in the regulation of postmitotic assembly mechanisms in human cells.
Insights
The protein phosphatase 2A-B55alpha complex is crucial for rebuilding cellular structures after mitosis. It works with importin-beta1 to regulate the exit from mitosis in human cells.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Cellular structures reorganize during mitotic exit for interphase function.
- This process requires Cdk1 inactivation and substrate dephosphorylation.
- The role of protein phosphatases in intact cells during mitotic exit is unclear.
Purpose of the Study:
- To identify protein phosphatases involved in mitotic exit in human cells.
- To elucidate the function of PP2A-B55alpha in postmitotic reassembly.
- To investigate the cooperation between PP2A-B55alpha and importin-beta1.
Main Methods:
- Genome-wide RNAi screen of protein phosphatases.
- Live-cell imaging assays.
- Chemically induced mitotic exit assay.
- Biochemical assays including co-purification.
Main Results:
- PP2A-B55alpha was identified as essential for mitotic spindle breakdown and reassembly of nuclear envelope, Golgi, and chromatin.
- PP2A-B55alpha acts downstream of Cdk1 inactivation.
- Mitotic PP2A-B55alpha exhibits reduced activity and hyper-phosphorylation, and co-purifies with importin-beta1.
- Importin-beta1 depletion synergistically delays mitotic exit with PP2A-B55alpha depletion.
Conclusions:
- PP2A-B55alpha is a key regulator of postmitotic cellular reassembly.
- PP2A-B55alpha and importin-beta1 cooperate to control mitotic exit mechanisms.
- This study reveals novel roles for PP2A-B55alpha in cell cycle regulation and organelle biogenesis.
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