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PINK1-Parkin-Mediated mitophagy alleviates hepatocyte injury induced by α-amanitin
Yang Zhao1, Ziheng Zou1, Peng Wu2
1Department of Clinical Veterinary Medicine, College of Veterinary Medicine, Yunnan Agricultural University, Jin Hei Road No.95, Panlong District, Kunming 650051, PR China.
Abstract:
The death cap mushroom (Amanita phalloides) is one of the most toxic fungi worldwide, with α-amanitin (α-AMA) identified as its primary lethal toxin. Mitophagy selectively eliminates damaged mitochondria via the autophagy pathway and plays a critical role in maintaining mitochondrial quality and cellular homeostasis. However, its function in α-AMA-induced liver injury remains unclear. To elucidate the role and underlying mechanism of mitophagy in α-AMA hepatotoxicity, this study investigated its effects on α-AMA-exposed hepatocytes using both in vitro and in vivo models. The results showed that α-AMA treatment significantly reduced hepatocyte viability and increased reactive oxygen species (ROS) levels, confirming its hepatotoxic effects. Subsequently, mitophagy was activated to assess its functional role. Activation of mitophagy markedly alleviated α-AMA-induced hepatocyte damage. Further mechanistic analysis revealed that mitophagy activation also significantly attenuated oxidative stress and apoptosis-two key pathological processes associated with mitochondrial dysfunction under α-AMA toxicity. In summary, this study provides new evidence that enhancing mitophagy protects hepatocytes against α-AMA-induced injury. These findings highlight mitophagy as a promising therapeutic target for developing treatment strategies against life-threatening α-AMA poisoning.
Insights
Enhancing mitophagy, a cellular process for removing damaged mitochondria, protects liver cells from the deadly toxin α-amanitin found in death cap mushrooms. This discovery offers a potential new treatment for α-amanitin poisoning.
Area of Science:
- Hepatology
- Toxicology
- Cell Biology
Background:
- The death cap mushroom (Amanita phalloides) contains α-amanitin (α-AMA), a potent toxin causing severe liver injury.
- Mitophagy, the selective removal of damaged mitochondria, is crucial for cellular health but its role in α-AMA hepatotoxicity is unknown.
Purpose of the Study:
- To investigate the role and mechanism of mitophagy in α-AMA-induced liver injury.
- To determine if modulating mitophagy can protect against α-AMA toxicity.
Main Methods:
- In vitro and in vivo models were used to study α-AMA-exposed hepatocytes.
- Mitophagy activation was performed to assess its protective effects.
- Mechanistic analyses focused on oxidative stress and apoptosis.
Main Results:
- α-AMA significantly reduced hepatocyte viability and increased reactive oxygen species (ROS).
- Activation of mitophagy alleviated α-AMA-induced hepatocyte damage.
- Mitophagy activation attenuated oxidative stress and apoptosis, key pathological processes in α-AMA toxicity.
Conclusions:
- Enhanced mitophagy protects hepatocytes against α-amanitin-induced liver injury.
- Mitophagy activation mitigates key pathological processes like oxidative stress and apoptosis.
- Targeting mitophagy presents a promising therapeutic strategy for α-AMA poisoning.

