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Published on: April 2, 2017
Inhibition of p53 Sulfoconjugation Prevents Oxidative Hepatotoxicity and Acute Liver Failure
Pengfei Xu1, Yue Xi2, Pengcheng Wang1
1Center for Pharmacogenetics and Department of Pharmaceutical Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania.
Background & Aims:
Sulfoconjugation of small molecules or protein peptides is a key mechanism to ensure biochemical and functional homeostasis in mammals. The PAPS synthase 2 (PAPSS2) is the primary enzyme to synthesize the universal sulfonate donor 3'-phosphoadenosine 5'-phosphosulfate (PAPS). Acetaminophen (APAP) overdose is the leading cause of acute liver failure (ALF), in which oxidative stress is a key pathogenic event, whereas sulfation of APAP contributes to its detoxification. The goal of this study was to determine whether and how PAPSS2 plays a role in APAP-induced ALF.
Methods:
Gene expression was analyzed in APAP-induced ALF in patients and mice. Liver-specific Papss2-knockout mice using Alb-Cre (Papss2ΔHC) or AAV8-TBG-Cre (Papss2iΔHC) were created and subjected to APAP-induced ALF. Primary human and mouse hepatocytes were used for in vitro mechanistic analysis.
Results:
The hepatic expression of PAPSS2 was decreased in APAP-induced ALF in patients and mice. Surprisingly, Papss2ΔHC mice were protected from APAP-induced hepatotoxicity despite having a decreased APAP sulfation, which was accompanied by increased hepatic antioxidative capacity through the activation of the p53-p2-Nrf2 axis. Treatment with a sulfation inhibitor also ameliorated APAP-induced hepatotoxicity. Gene knockdown experiments showed that the hepatoprotective effect of Papss2ΔHC was Nrf2, p53, and p21 dependent. Mechanistically, we identified p53 as a novel substrate of sulfation. Papss2 ablation led to p53 protein accumulation by preventing p53 sulfation, which disrupts p53-MDM2 interaction and p53 ubiquitination and increases p53 protein stability.
Conclusions:
We have uncovered a previously unrecognized and p53-mediated role of PAPSS2 in controlling oxidative response. Inhibition of p53 sulfation may be explored for the clinical management of APAP overdose.
Insights
PAPSS2 deficiency protects against acetaminophen-induced liver failure by activating antioxidant pathways via p53 stabilization. This unexpected finding reveals a new role for PAPSS2 in oxidative stress response and suggests targeting p53 sulfation for acetaminophen overdose treatment.
Area of Science:
- Biochemistry
- Molecular Biology
- Hepatology
Background:
- Sulfoconjugation is vital for mammalian homeostasis.
- PAPS synthase 2 (PAPSS2) synthesizes the universal sulfonate donor PAPS.
- Acetaminophen (APAP) overdose causes acute liver failure (ALF) via oxidative stress, with APAP sulfation aiding detoxification.
Purpose of the Study:
- To investigate the role of PAPSS2 in APAP-induced ALF.
- To elucidate the mechanisms underlying PAPSS2's involvement in liver injury.
Main Methods:
- Analyzed PAPSS2 gene expression in ALF patients and mice.
- Created and studied liver-specific Papss2-knockout mice (Papss2ΔHC and Papss2iΔHC) in APAP-induced ALF models.
- Utilized primary human and mouse hepatocytes for in vitro mechanistic studies.
Main Results:
- Hepatic PAPSS2 expression decreased in APAP-induced ALF.
- Papss2ΔHC mice showed protection from APAP hepatotoxicity despite reduced APAP sulfation.
- Protection was linked to increased hepatic antioxidant capacity via the p53-p2-Nrf2 axis activation.
- p53 was identified as a novel sulfation substrate, with Papss2 ablation stabilizing p53 by preventing its sulfation.
Conclusions:
- PAPSS2 plays a previously unrecognized role in controlling oxidative response, mediated by p53.
- Inhibition of p53 sulfation presents a potential therapeutic strategy for managing APAP overdose.
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