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Knockdown of IRF6 Attenuates Hydrogen Dioxide-Induced Oxidative Stress via Inhibiting Mitochondrial Dysfunction in
Xiao-Min Guo1, Bo Chen2, Jian-Meng Lv1
1Department of Neurology, Shaanxi Provincial People's Hospital, 256 Youyi West Road, Xi'an, 710068, Shaanxi, China.
Abstract:
Oxidative stress-induced cell damage is involved in many neurological diseases. Interferon regulatory factor 6 (IRF6), a member of the IRF family of transcription factors, is required for the differentiation of skin, breast epithelium, and oral epithelium. However, the regulation and function of IRF6 in central nervous system remain unknown. This study aimed to investigate the role of IRF6 in hydrogen peroxide (H2O2)-induced oxidative neuronal injury in HT22 mouse hippocampal cells. Treatment with H2O2 significantly increased the expression of IRF6 at both mRNA and protein levels, and knockdown of IRF6 using specific small interfering RNA reduced H2O2-induced cytotoxicity, as evidenced by increased cell viability and decreased apoptosis. Knockdown of IRF6 attenuated intracellular reactive oxygen species (ROS) generation and lipid peroxidation, and also preserved endogenous antioxidant enzyme activities. The inhibitory effect of IRF6 knockdown on mitochondrial dysfunction was demonstrated by reduced mitochondrial oxidative level, preserved mitochondrial membrane potential (MMP) and ATP generation, as well as attenuated mitochondrial swelling. In addition, down-regulation of IRF6 inhibited the activation of mitochondrial apoptotic factors, whereas IRF6 knockdown together with caspase inhibitors had no extra effect on cell viability and LDH release. These results suggest that knockdown of IRF6 has protective effects against H2O2-induced oxidative stress by reducing ROS accumulation and apoptosis, and these protective effects are dependent on preservation of mitochondrial function.
Insights
Interferon regulatory factor 6 (IRF6) plays a role in oxidative stress in brain cells. Reducing IRF6 protects neurons from hydrogen peroxide (H2O2)-induced damage by preserving mitochondrial function.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Oxidative stress contributes to neurological disease pathogenesis.
- Interferon regulatory factor 6 (IRF6) is crucial for epithelial differentiation but its role in the central nervous system is unexplored.
Purpose of the Study:
- To investigate the function of IRF6 in hydrogen peroxide (H2O2)-induced oxidative neuronal injury.
- To determine the protective mechanisms of IRF6 modulation in neuronal cells.
Main Methods:
- Utilized HT22 mouse hippocampal cells exposed to H2O2.
- Employed small interfering RNA (siRNA) to knockdown IRF6 expression.
- Assessed cell viability, apoptosis, reactive oxygen species (ROS) generation, lipid peroxidation, antioxidant enzyme activity, and mitochondrial function.
Main Results:
- H2O2 increased IRF6 expression; IRF6 knockdown reduced H2O2-induced cytotoxicity and apoptosis.
- IRF6 knockdown attenuated intracellular ROS and lipid peroxidation, preserving antioxidant enzyme activity.
- Down-regulation of IRF6 protected mitochondrial function, including membrane potential and ATP generation, and inhibited mitochondrial apoptosis pathways.
Conclusions:
- IRF6 knockdown confers protection against H2O2-induced oxidative stress in neuronal cells.
- The protective effects are mediated by reduced ROS accumulation and apoptosis, linked to the preservation of mitochondrial integrity and function.
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