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NOX4 promotes ferroptosis of astrocytes by oxidative stress-induced lipid peroxidation via the impairment of mitochondrial metabolism in Alzheimer's diseasesopen access

Authors
Park, Min WooCha, Hyeon WooKim, JunhyungKim, Jung HanYang, HaesungYoon, SunmiBoonpraman, NapissaraYi, Sun ShinYoo, Ik DongMoon, Jong-Seok
Issue Date
May-2021
Publisher
Elsevier BV
Keywords
NOX4; ferroptosis; astrocytes; oxidative stress; lipid peroxidation; mitochondrial metabolism; Alzheimer’s diseases
Citation
Redox Biology, v.41, pp 1 - 15
Pages
15
Journal Title
Redox Biology
Volume
41
Start Page
1
End Page
15
URI
https://scholarworks.bwise.kr/sch/handle/2021.sw.sch/21505
DOI
10.1016/j.redox.2021.101947
ISSN
2213-2317
Abstract
Oxidative stress has been implicated in the pathogenesis of Alzheimer?s disease (AD). Mitochondrial dysfunction is linked to oxidative stress and reactive oxygen species (ROS) in neurotoxicity during AD. Impaired mitochondrial metabolism has been associated with mitochondrial dysfunction in brain damage of AD. While the role of NADPH oxidase 4 (NOX4), a major source of ROS, has been identified in brain damage, the mechanism by which NOX4 regulates ferroptosis of astrocytes in AD remains unclear. Here, we show that the protein levels of NOX4 were significantly elevated in impaired astrocytes of cerebral cortex from patients with AD and APP/PS1 double-transgenic mouse model of AD. The levels of 4-hydroxynonenal (4-HNE) and malondialdehyde (MDA), a marker of oxidative stress-induced lipid peroxidation, were significantly also elevated in impaired astrocytes of patients with AD and mouse AD. We demonstrate that the over-expression of NOX4 significantly increases the impairment of mitochondrial metabolism by inhibition of mitochondrial respiration and ATP production via the reduction of five protein complexes in the mitochondrial ETC in human astrocytes. Moreover, the elevation of NOX4 induces oxidative stress by mitochondrial ROS (mtROS) production, mitochondrial fragmentation, and inhibition of cellular antioxidant process in human astrocytes. Furthermore, the elevation of NOX4 increased ferroptosis-dependent cytotoxicity by the activation of oxidative stress-induced lipid peroxidation in human astrocytes. These results suggest that NOX4 promotes ferroptosis of astrocytes by oxidative stress-induced lipid peroxidation via the impairment of mitochondrial metabolism in AD.
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