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Updated: Jul 1, 2025

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
PR55α-controlled protein phosphatase 2A inhibits p16 expression and blocks cellular senescence induction by
Chitra Palanivel1, Lepakshe S V Madduri1, Ashley L Hein2
1Department of Radiation Oncology, University of Nebraska Medical Center, Omaha, NE 68198, USA.
Abstract:
Cellular senescence is a permanent cell cycle arrest that can be triggered by both internal and external genotoxic stressors, such as telomere dysfunction and DNA damage. The execution of senescence is mainly by two pathways, p16/RB and p53/p21, which lead to CDK4/6 inhibition and RB activation to block cell cycle progression. While the regulation of p53/p21 signaling in response to DNA damage and other insults is well-defined, the regulation of the p16/RB pathway in response to various stressors remains poorly understood. Here, we report a novel function of PR55α, a regulatory subunit of PP2A Ser/Thr phosphatase, as a potent inhibitor of p16 expression and senescence induction by ionizing radiation (IR), such as γ-rays. The results show that ectopic PR55α expression in normal pancreatic cells inhibits p16 transcription, increases RB phosphorylation, and blocks IR-induced senescence. Conversely, PR55α-knockdown by shRNA in pancreatic cancer cells elevates p16 transcription, reduces RB phosphorylation, and triggers senescence induction after IR. Furthermore, this PR55α function in the regulation of p16 and senescence is p53-independent because it was unaffected by the mutational status of p53. Moreover, PR55α only affects p16 expression but not p14 (ARF) expression, which is also transcribed from the same CDKN2A locus but from an alternative promoter. In normal human tissues, levels of p16 and PR55α proteins were inversely correlated and mutually exclusive. Collectively, these results describe a novel function of PR55α/PP2A in blocking p16/RB signaling and IR-induced cellular senescence.
Insights
PR55α inhibits p16 expression and blocks ionizing radiation-induced cellular senescence by regulating the p16/RB pathway independently of p53 status. This finding reveals a novel role for PR55α in controlling cell cycle arrest.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Cellular senescence is a critical tumor suppressor mechanism involving cell cycle arrest.
- Senescence is primarily mediated by the p16/RB and p53/p21 pathways.
- Regulation of the p16/RB pathway by various stressors is not fully understood.
Purpose of the Study:
- To investigate the role of PR55α, a subunit of PP2A phosphatase, in regulating p16 expression and senescence.
- To elucidate the mechanism by which PR55α affects the p16/RB pathway in response to ionizing radiation (IR).
Main Methods:
- Ectopic expression and knockdown (shRNA) of PR55α in pancreatic cells.
- Analysis of p16 transcription, RB phosphorylation, and senescence markers.
- Assessment of PR55α function in p53-mutated and wild-type cells.
- Correlation analysis of PR55α and p16 protein levels in human tissues.
Main Results:
- Ectopic PR55α expression inhibited p16 transcription, increased RB phosphorylation, and blocked IR-induced senescence.
- PR55α knockdown elevated p16 transcription, reduced RB phosphorylation, and induced IR-triggered senescence.
- PR55α's effect on p16 and senescence was independent of p53 status.
- PR55α specifically regulated p16, not p14 (ARF), expression.
- Inverse correlation between PR55α and p16 protein levels observed in normal human tissues.
Conclusions:
- PR55α acts as a novel inhibitor of p16 expression and IR-induced cellular senescence.
- PR55α regulates the p16/RB pathway in a p53-independent manner.
- PR55α/PP2A represents a potential target for modulating senescence in cancer therapy.
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