NRF2 is essential for iron-overload stimulated osteoclast differentiation through regulation of redox and iron homeostasis

被引:0
|
作者
Jian Zhang
Lingyan Zhang
Gang Yao
Hai Zhao
Shuguang Wu
机构
[1] Guizhou University of Traditional Chinese Medicine,Institute of Laboratory Animal Science
[2] Huaxi University Town,undefined
来源
Cell Biology and Toxicology | 2023年 / 39卷
关键词
NRF2; Osteoclast differentiation; Iron homeostasis; Redox balance; Bone resorption;
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学科分类号
摘要
Iron overload enhances osteoclastic bone resorption and induces osteoporosis. Excess iron is highly toxic. The modulation of redox and iron homeostasis is critical for osteoclast differentiation under iron-overload condition. Nuclear factor erythroid 2-related factor 2 (NRF2) is a transcription factor that regulates the cellular defense against oxidative stress and iron overload through the expression of genes involved in anti-oxidative processes and iron metabolism. Our studies demonstrated that NRF2 activation was suppressed during osteoclast differentiation. Under iron-overload condition, NRF2 and its mediated antioxidant and iron metabolism genes were activated by reactive oxygen species (ROS), which enhanced antioxidant capability. NRF2 mediated the upregulation of iron exporter ferroportin 1 (FPN1) and iron storage protein ferritin, contributing to decreased levels of intracellular iron. Nfe2l2 knockout induced oxidative stress and promoted osteoclast differentiation under normal condition, but induced ferroptosis under iron-overload condition. Nfe2l2 knockout alleviated iron overload induced bone loss by inhibiting osteoclast differentiation. Our results suggest that NRF2 activation is essential for osteoclast differentiation by enhancing antioxidant capability and reducing intracellular iron under iron-overload condition. Targeting NRF2 to induce ferroptosis could be a potential therapy for the treatment of iron-overload induced osteoporosis.
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页码:3305 / 3321
页数:16
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