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Amanitin-induced variable cytotoxicity in various cell lines is mediated by the different expression levels of OATP1B3

细胞毒性 生物 细胞培养 细胞生物学 分子生物学 癌症研究 生物化学 化学 体外 遗传学
作者
Mengqiang Gong,Zhi Li,Hua Xu,Bo Ma,Pengxia Gao,Lili Wang,Junkai Li,Qinglai Wu,Jianfeng Wu,Jianwei Xie
出处
期刊:Food and Chemical Toxicology [Elsevier BV]
卷期号:188: 114665-114665 被引量:5
标识
DOI:10.1016/j.fct.2024.114665
摘要

Amanita phalloides is one of the deadliest mushrooms worldwide, causing most fatal cases of mushroom poisoning. Among the poisonous substances of Amanita phalloides, amanitins are the most lethal toxins to humans. Currently, there are no specific antidotes available for managing amanitin poisoning and treatments are lack of efficacy. Amanitin mainly causes severe injuries to specific organs, such as the liver, stomach, and kidney, whereas the lung, heart, and brain are hardly affected. However, the molecular mechanism of this phenomenon remains not understood. To explore the possible mechanism of organ specificity of amanitin-induced toxicity, eight human cell lines derived from different organs were exposed to α, β, and γ-amanitin at concentrations ranging from 0.3 to 100 μM. We found that the cytotoxicity of amanitin differs greatly in various cell lines, among which liver-derived HepG2, stomach-derived BGC-823, and kidney-derived HEK-293 cells are most sensitive. Further mechanistic study revealed that the variable cytotoxicity is mainly dependent on the different expression levels of the organic anion transporting polypeptide 1B3 (OATP1B3), which facilitates the internalization of amanitin into cells. Besides, knockdown of OATP1B3 in HepG2 cells prevented α-amanitin induced cytotoxicity. These results indicated that OATP1B3 may be a crucial therapeutic target against amanitin-induced organ failure.
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