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Published on: September 16, 2020
Mitochondrial miR-1285 regulates copper-induced mitochondrial dysfunction and mitophagy by impairing IDH2 in pig
Jianzhao Liao1, Quanwei Li1, Zhuoying Hu1
1College of Veterinary Medicine, South China Agricultural University, Guangzhou 510642, Guangdong, PR China.
Abstract:
Copper (Cu), a hazardous heavy metal, can lead to toxic effects on host physiology. Recently, specific mitochondria-localized miRNAs (mitomiRs) were shown to modulate mitochondrial function, but the underlying mechanisms remain undefined. Here, we identified mitomiR-1285 as an important molecule regulating mitochondrial dysfunction and mitophagy in jejunal epithelial cells under Cu exposure. Mitochondrial dysfunction and mitophagy were the important mechanisms of Cu-induced pathological damage in jejunal epithelial cells, which were accompanied by significant increase of mitomiR-1285 in vivo and in vitro. Knockdown of mitomiR-1285 significantly attenuated Cu-induced mitochondrial respiratory dysfunction, ATP deficiency, mitochondrial membrane potential reduction, mitochondrial reactive oxygen species accumulation, and mitophagy. Subsequently, bioinformatics analysis and luciferase reporter assay demonstrated that IDH2 was a direct target of mitomiR-1285. RNA interference of IDH2 dramatically reversed the effect that mitomiR-1285 knockdown relieved mitochondrial dysfunction and mitophagy induced by Cu, and the opposite effect was shown by overexpression of IDH2. Therefore, our results suggested that mitomiR-1285 aggravated Cu-induced mitochondrial dysfunction and mitophagy via suppressing IDH2 expression. These findings identified the important mechanistic connection between mitomiRs and mitochondrial metabolism under Cu exposure, providing a new insight into Cu toxicology.
Insights
Copper exposure causes mitochondrial dysfunction in jejunal cells, mediated by mitomiR-1285. This mitomiR aggravates damage by suppressing IDH2, offering new insights into copper toxicology.
Area of Science:
- Cell Biology
- Toxicology
- Molecular Biology
Background:
- Copper (Cu) is a hazardous heavy metal impacting host physiology.
- Mitochondria-localized microRNAs (mitomiRs) influence mitochondrial function, but mechanisms are unclear.
Purpose of the Study:
- To identify mitomiRs involved in copper-induced mitochondrial dysfunction in jejunal epithelial cells.
- To elucidate the mechanism by which mitomiR-1285 affects mitochondrial function and mitophagy under copper exposure.
Main Methods:
- In vivo and in vitro studies using jejunal epithelial cells.
- Knockdown and overexpression of mitomiR-1285 and IDH2.
- Assessment of mitochondrial function (respiration, ATP levels, membrane potential, ROS).
- Bioinformatics analysis and luciferase reporter assays to identify target genes.
Main Results:
- Copper exposure increased mitomiR-1285 levels and induced mitochondrial dysfunction and mitophagy.
- MitomiR-1285 knockdown ameliorated copper-induced mitochondrial damage and mitophagy.
- IDH2 was identified as a direct target of mitomiR-1285.
- Modulation of IDH2 reversed the effects of mitomiR-1285 on mitochondrial function.
Conclusions:
- MitomiR-1285 exacerbates copper-induced mitochondrial dysfunction and mitophagy by suppressing IDH2.
- This study reveals a novel mechanism linking mitomiRs, mitochondrial metabolism, and copper toxicology.
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