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Updated: Dec 1, 2025

Generation of a Rat Model of Acute Liver Failure by Combining 70% Partial Hepatectomy and Acetaminophen
Published on: November 27, 2019
circ-CBFB upregulates p66Shc to perturb mitochondrial dynamics in APAP-induced liver injury
Zhecheng Wang1, Yan Zhao1, Ruimin Sun1
1Department of Pharmacology, Dalian Medical University, 116044, Dalian, China.
Abstract:
p66Shc, a master regulator of mitochondrial reactive oxygen species (mtROS), is a crucial mediator of hepatocyte oxidative stress. However, its functional contribution to acetaminophen (APAP)-induced liver injury and the mechanism by which it is modulated remain unknown. Here, we aimed to assess the effect of p66Shc on APAP-induced liver injury and to evaluate if circular RNA (circRNA) functions as a competitive endogenous RNA (ceRNA) to mediate p66Shc in APAP-induced liver injury. p66Shc-, miR-185-5p-, and circ-CBFB-silenced mice were injected with APAP. AML12 cells were transfected with p66Shc, miR-185-5p, and circ-CBFB silencing or overexpression plasmids or siRNAs prior to APAP stimulation. p66Shc was upregulated in liver tissues in response to APAP, and p66Shc silencing in vivo protected mice from APAP-induced mitochondrial dynamics perturbation and liver injury. p66Shc knockdown in vitro attenuated mitochondrial dynamics and APAP-induced hepatocyte injury. Mechanically, p66Shc perturbs mitochondrial dynamics partially by inhibiting OMA1 ubiquitination. miR-185-5p, which directly suppressed p66Shc translation, was identified by microarray and bioinformatics analyses, and its overexpression attenuated mitochondrial dynamics and hepatocyte injury in vitro. Furthermore, luciferase, pull-down and RNA immunoprecipitation assays demonstrated that circ-CBFB acts as a miRNA sponge of miR-185-5p to mediate p66Shc in APAP-induced liver injury. circ-CBFB knockdown also alleviated APAP-induced mitochondrial dynamics perturbation and hepatocyte injury. More importantly, we found that the protective effects of circ-CBFB knockdown on p66Shc, mitochondrial dynamics and liver injury were abolished by miR-185-5p inhibition both in vivo and in vitro. In conclusion, p66Shc is a key regulator of APAP-induced liver injury that acts by triggering mitochondrial dynamics perturbation. circ-CBFB functions as a ceRNA to regulate p66Shc during APAP-induced liver injury, which may provide a potential therapeutic target.
Insights
p66Shc protein exacerbates acetaminophen-induced liver injury by disrupting mitochondrial dynamics. Circular RNA circ-CBFB acts as a sponge for miR-185-5p, regulating p66Shc and offering a potential therapeutic target for liver damage.
Area of Science:
- Hepatology
- Molecular Biology
- Mitochondrial Biology
Background:
- p66Shc is a key regulator of mitochondrial reactive oxygen species (mtROS) and hepatocyte oxidative stress.
- The role of p66Shc in acetaminophen (APAP)-induced liver injury and its regulatory mechanisms are not fully understood.
Purpose of the Study:
- To investigate the effect of p66Shc on APAP-induced liver injury.
- To determine if circular RNA (circRNA) mediates p66Shc function via a competitive endogenous RNA (ceRNA) mechanism in APAP-induced liver injury.
Main Methods:
- Mice and AML12 cells were treated with APAP and subjected to genetic silencing or overexpression of p66Shc, miR-185-5p, and circ-CBFB.
- Mitochondrial dynamics, hepatocyte injury, and molecular interactions were assessed using various assays including luciferase, pull-down, and RNA immunoprecipitation.
Main Results:
- p66Shc upregulation correlated with APAP-induced liver injury; its silencing protected against liver damage and mitochondrial perturbation.
- p66Shc inhibition of OMA1 ubiquitination was identified as a mechanism for perturbing mitochondrial dynamics.
- circ-CBFB sponged miR-185-5p, thereby regulating p66Shc levels and influencing APAP-induced liver injury.
Conclusions:
- p66Shc is a critical mediator of APAP-induced liver injury through mitochondrial dynamics perturbation.
- The circ-CBFB/miR-185-5p/p66Shc axis represents a novel ceRNA network involved in APAP-induced liver injury.
- Targeting this circRNA pathway may offer a therapeutic strategy for managing APAP-induced liver damage.
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