Pirh2, an E3 ligase, regulates the AIP4-p73 regulatory pathway by modulating AIP4 expression and ubiquitination
Rami Abou Zeinab1, H Helena Wu1, Yasser Abuetabh1
1370 Heritage Medical Research Center, Department of Laboratory Medicine and Pathology, University of Alberta, Edmonton, Alberta, Canada.
Abstract:
Pirh2 is an E3 ligase belonging to the RING-H2 family and shown to bind, ubiquitinate and downregulate p73 tumor suppressor function without altering p73 protein levels. AIP4, an E3 ligase belonging to the HECT domain family, has been reported to be a negative regulatory protein that promotes p73 ubiquitination and degradation. Herein, we found that Pirh2 is a key regulator of AIP4 that inhibits p73 function. Pirh2 physically interacts with AIP4 and significantly downregulates AIP4 expression. This downregulation is shown to involve the ubiquitination of AIP4 by Pirh2. Importantly, we demonstrated that the ectopic expression of Pirh2 inhibits the AIP4-p73 negative regulatory pathway, which was restored when depleting endogenous Pirh2 utilizing Pirh2-siRNAs. We further observed that Pirh2 decreases AIP4-mediated p73 ubiquitination. At the translational level and specifically regarding p73 cell cycle arrest function, Pirh2 still ensures the arrest of p73-mediated G1 despite AIP4 expression. Our study reveals a novel link between two E3 ligases previously thought to be unrelated in regulating the same effector substrate, p73. These findings open a gateway to explain how E3 ligases differentiate between regulating multiple substrates that may belong to the same family of proteins, as it is the case for the p53 and p73 proteins.
Insights
Pirh2, an E3 ligase, regulates AIP4
Area of Science:
- Molecular Biology
- Oncology
- Biochemistry
Background:
- Pirh2 (RING-H2 E3 ligase) downregulates p73 tumor suppressor function.
- AIP4 (HECT E3 ligase) promotes p73 ubiquitination and degradation.
- Pirh2 and AIP4 are implicated in p73 regulation.
Purpose of the Study:
- Investigate the regulatory relationship between Pirh2 and AIP4.
- Elucidate Pirh2's role in the AIP4-p73 pathway.
- Determine how Pirh2 influences p73 function in the context of AIP4.
Main Methods:
- Co-immunoprecipitation assays to confirm Pirh2-AIP4 interaction.
- Western blotting to assess protein expression levels.
- siRNA-mediated knockdown of Pirh2.
- Analysis of p73 ubiquitination and cell cycle arrest.
Main Results:
- Pirh2 physically interacts with and downregulates AIP4 expression via ubiquitination.
- Pirh2 inhibits the AIP4-mediated negative regulation of p73.
- Pirh2 decreases AIP4-induced p73 ubiquitination and preserves p73's G1 cell cycle arrest function.
- Depletion of Pirh2 restores the AIP4-p73 regulatory pathway.
Conclusions:
- Pirh2 is a key regulator of AIP4, linking two E3 ligases in p73 regulation.
- This study reveals a novel mechanism for E3 ligase crosstalk in controlling substrates like p73.
- Findings provide insights into how E3 ligases differentiate substrate regulation within protein families.
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