化学
细胞生物学
疾病
GPX4
下调和上调
细胞
神经元
生物物理学
氧化应激
程序性细胞死亡
作者
Lexuan Gu,Dongmei Sun,Luxiang Sun,Tianqi Ma,Qiulu Wang,Xiaoli Hou,Hong Cheng
标识
DOI:10.1615/critreveukaryotgeneexpr.2026064685
摘要
Histone methylation is a key hallmark of Alzheimer's disease (AD). JMJD6 functions in a neuro-protective role. The purpose of this study is to explore the role of JMJD6 in AD. Neurons are exposed to Aβ1-42 to establish in vitro AD model. Neurons are treated with RSL3 to induce neuronal ferroptosis. mRNA expression is detected using qRT-PCR. Protein expression is determined using Western blot. The levels of ROS, GSH, MDA, ferrous iron, and C11-BODIPY are analyzed. Neuronal death is detected using PI staining. H4R3 symmetrical dimethylation of GPX4 is analyzed using ChIP and luciferase assays. We found that Aβ1-42 exposure promotes iron overload and lipid peroxidation, driving neuronal ferroptosis. Aβ1-42 exposure inhibits the expression of JMJD6. However, overexpression of JMJD6 reverses Aβ1-42 exposure-induced neuronal ferroptosis. Moreover, JMJD6 promotes H4R3 symmetrical dimethylation and upregulation of GPX4, driving the release of anti-oxidant GSH. Furthermore, JMJD6 overexpression alleviated cognitive impairment and neuronal ferroptosis in AD mouse models. However, downregulation of GPX4 mediates neuronal ferroptosis. In conclusion, JMJD6 protects against neuronal ferroptosis in AD via upregulating GPX4.
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