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Updated: Aug 20, 2026

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
Published on: June 6, 2017
PIAS-1 is a checkpoint regulator which affects exit from G1 and G2 by sumoylation of p73
Eliana Munarriz1, Daniela Barcaroli, Anastasis Stephanou
1Medical Research Council, Toxicology Unit, Hodgkin Building, Leicester University, Lancaster Road, P.O. Box 138, Leicester LE1 9HN, United Kingdom.
Abstract:
p73 is a recently described member of the p53 family, and, like p53, it undergoes a number of posttranslational modifications. Here we show, by yeast two-hybrid screening, pull-down assays, and coimmunoprecipitation, that p73alpha, -beta, and -gamma bind to the protein inhibitor of activated STAT-1 (PIAS-1) and that this binding stabilizes p73. PIAS-1 also sumoylates p73alpha, although not the C-terminally truncated isoforms p73beta and -gamma, and this requires the RING finger domain of PIAS-1. The DeltaNp73alpha isoform can also bind, and be sumoylated by, PIAS-1. PIAS-1-mediated sumoylation decreases p73 transcriptional activity on several target promoters, such as Bax. p73 is colocalized in the nucleus with PIAS-1, and sumoylated p73 is located exclusively in the nuclear matrix. PIAS-1 is expressed predominantly during S phase, and PIAS-1 overexpression reduces p73-mediated transcription of p21, with a reduction of cells in G(1) and cell cycle reentry. Inhibition of endogenous PIAS-1 by RNA interference reduces the proportion of cells in S phase and induces G(2) arrest. These data suggest that PIAS-1, acting partly through binding and sumoylation of p73, is an important component of the cell cycle machinery.
Insights
Protein inhibitor of activated STAT-1 (PIAS-1) binds and sumoylates p73, a p53 family member. This interaction regulates p73
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- p73, a p53 family member, undergoes posttranslational modifications.
- The protein inhibitor of activated STAT-1 (PIAS-1) is involved in regulating gene expression and protein modification.
Purpose of the Study:
- To investigate the interaction between p73 and PIAS-1.
- To determine the functional consequences of PIAS-1 binding and sumoylation on p73 activity and cell cycle regulation.
Main Methods:
- Yeast two-hybrid screening
- Pull-down assays
- Coimmunoprecipitation
- RNA interference (RNAi)
Main Results:
- PIAS-1 binds to p73 isoforms (p73alpha, -beta, -gamma) and stabilizes p73.
- PIAS-1 sumoylates p73alpha and DeltaNp73alpha, requiring PIAS-1's RING finger domain.
- PIAS-1-mediated sumoylation decreases p73 transcriptional activity and affects cell cycle progression (G1, S, G2 phases).
Conclusions:
- PIAS-1 interacts with and sumoylates p73, modulating its function.
- PIAS-1 plays a significant role in cell cycle regulation, partly through its interaction with p73.
- These findings highlight PIAS-1 as a key component of the cell cycle machinery.
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