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Mitochondrial ferritin protects SH-SY5Y cells against H2O2-induced oxidative stress and modulates α-synuclein
Hongpeng Guan1, Hongkuan Yang1, Mingchun Yang1
1Molecular Neuroscience Research Center, Shiga University of Medical Science, Seta Tsukinowa-cho, Otsu 520-2192, Japan; Department of Neurosurgery, 1st Affiliated Hospital, Harbin Medical University, Harbin 150001, China.
Abstract:
Mitochondrial ferritin (FtMt) is a type of ferritin that sequesters iron. Previous studies have shown that FtMt is expressed by dopaminergic neurons in the substantia nigra and that it may be involved in the pathology of Parkinson's disease. However, the functional roles of FtMt in dopaminergic neurons remain unclear. In this study, we investigated the function of FtMt in α-synuclein regulation and its antioxidant roles in dopaminergic cells using human dopaminergic neuroblastoma cells, SH-SY5Y. In physiological conditions, FtMt knockdown increased α-synuclein expression at the protein level but not at the mRNA level. By contrast, FtMt overexpression reduced α-synuclein expression at the protein level but not at the mRNA level. FtMt enhanced the iron levels in mitochondria but decreased the iron levels in the intracellular labile iron pool. We found that FeCl2 could abolish the effects of FtMt overexpression on α-synuclein expression. Under oxidative stress conditions induced by H2O2, we found that H2O2 treatment induced FtMt and α-synuclein expression at both the mRNA and protein levels in a dose-dependent manner. FtMt overexpression protected cells against oxidative stress and alleviated the enhanced α-synuclein expression induced by H2O2 at the posttranscriptional level. Our results indicate that FtMt modulates α-synuclein expression at the posttranscriptional level via iron regulation in physiological conditions. FtMt expression is enhanced under oxidative stress conditions, where FtMt protects cells against the oxidative stress as well as plays an important role in maintaining α-synuclein levels.
Insights
Mitochondrial ferritin (FtMt) regulates alpha-synuclein protein levels by controlling iron. FtMt protects dopaminergic cells from oxidative stress and maintains alpha-synuclein levels.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Mitochondrial ferritin (FtMt) sequesters iron and is found in dopaminergic neurons.
- FtMt's role in Parkinson's disease pathology and dopaminergic neuron function is unclear.
- Alpha-synuclein dysregulation is implicated in Parkinson's disease.
Purpose of the Study:
- To investigate the function of FtMt in regulating alpha-synuclein.
- To determine the antioxidant roles of FtMt in dopaminergic cells.
- To elucidate the mechanism of FtMt action via iron regulation.
Main Methods:
- Utilized human dopaminergic neuroblastoma SH-SY5Y cells.
- Performed FtMt knockdown and overexpression studies.
- Assessed alpha-synuclein expression at mRNA and protein levels.
- Measured intracellular and mitochondrial iron levels.
- Induced oxidative stress using hydrogen peroxide (H2O2).
Main Results:
- FtMt knockdown increased, while overexpression decreased, alpha-synuclein protein levels posttranscriptionally.
- FtMt enhanced mitochondrial iron but reduced labile intracellular iron.
- Iron supplementation (FeCl2) abolished FtMt's effect on alpha-synuclein.
- H2O2 induced FtMt and alpha-synuclein expression.
- FtMt overexpression protected cells against oxidative stress and H2O2-induced alpha-synuclein increase.
Conclusions:
- FtMt modulates alpha-synuclein posttranscriptionally through iron regulation under physiological conditions.
- FtMt expression increases under oxidative stress, conferring cellular protection.
- FtMt plays a crucial role in maintaining alpha-synuclein homeostasis and cellular integrity.
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