Fluoride exposure confers NRF2 activation in hepatocyte through both canonical and non‐canonical signaling pathways

非规范的 肝细胞 化学 信号转导 细胞生物学 生物化学 生物 体外
作者
Miaomiao Li,Yi Wang,Rongrong Liu,Mengjiao Shi,Yishu Zhao,Kaixuan Zeng,Rongguo Fu,Pengfei Liu
出处
期刊:Environmental Toxicology [Wiley]
卷期号:39 (1): 252-263
标识
DOI:10.1002/tox.23954
摘要

Abstract Due to the high abundance in the Earth's crust and industrial application, fluoride is widely present in our living environment. However, excessive fluoride exposure causes toxicity in different organs. As the most important detoxification and excretion organ, liver is more easily involved in fluoride toxicity than other organs, and oxidative stress is considered as the key mechanism related with fluoride hepatotoxicity. In this study, we mainly investigated the role of nuclear factor erythroid‐derived 2‐like 2 (NRF2, a core transcription factor in oxidative stress) in fluoride exposure‐induced hepatotoxicity as well as the related mechanism. Herein, liver cells (BNL CL.2) were treated with fluoride in different concentrations. The hepatotoxicity and NRF2 signaling pathway were analyzed respectively. Our results indicated that excessive fluoride (over 1 mM) resulted in obvious toxicity in hepatocyte and activated NRF2 and NRF2 target genes. The increased ROS generation after fluoride exposure suppressed KEAP1‐induced NRF2 ubiquitylation and degradation. Meanwhile, fluoride exposure also led to blockage of autophagic flux and upregulation of p62, which contributed to activation of NRF2 via competitive binding with KEAP1. Both pharmaceutical activation and genetic activation of NRF2 accelerated fluoride exposure‐induced hepatotoxicity. Thus, the upregulation of NRF2 in hepatocyte after fluoride exposure can be regarded as a cellular self‐defense, and NRF2‐KEAP1 system could be a novel molecular target against fluoride exposure‐induced hepatotoxicity.
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