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Mitochondrial Ferritin Overexpression Attenuates Ferroptosis and Mitochondrial Dysfunction by Reducing VDAC1 to
Yong Yuan1,2, Xiuqi Wang2, Huaihuan Xu1
1Department of Cardiovascular Surgery, The First Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, Jiangxi, China.
Abstract:
Ischaemic cardiomyopathy is becoming one of the most prevalent cardiovascular diseases among the global elderly population. However, the underlying molecular mechanisms remain incompletely understood. Our previous study demonstrated that VDAC1 plays a significant role in MI/RI. Furthermore, FTMT plays a pivotal role in iron metabolism. However, the precise molecular functions of VDAC1 and FTMT in MI/RI remain to be elucidated. In vitro H9c2 cells A/R and in vivo SD rat MI/RI models were constructed. The present study reports that VDAC1 levels were increased and FTMT levels were decreased in A/R. The overexpression of VDAC1 resulted in an exacerbation of the A/R-induced injury, characterised by an increase in oxidative stress, a reduction in the GSH/GSSG ratio, the formation of reactive oxygen species, elevated levels of lipid peroxidation, and the deposition of iron. In contrast, FTMT overexpression reversed these alterations and mitigated mitochondrial dysfunction by downregulating VDAC1, PTGS2 levels, upregulating GPX4 levels, inhibiting MPTP over-opening and stabilising MMP. Additionally, knockdown of VDAC1 alleviated A/R-induced ferroptosis. In vivo experiments showed that overexpression of FTMT improved cardiac function in rats, as evidenced by the reduction of MI/RI-induced serum CK-MB, LDH and Fe2+ content and the shrinkage of myocardial infarction area. Moreover, HE, DHE staining and TEM observations showed that the overexpression of FTMT ameliorated MI/RI-induced myocardial tissue and mitochondrial damage. Furthermore, the overexpression of FTMT was found to inhibit MI/RI-induced ferroptosis. In general, our study is the first to demonstrate that FTMT overexpression alleviates ferroptosis and mitochondrial dysfunction by regulating VDAC1, thereby reducing MI/RI injury.
Insights
FTMT overexpression alleviates myocardial infarction-reperfusion injury by reducing ferroptosis and mitochondrial dysfunction. This study highlights FTMT as a potential therapeutic target for ischemic cardiomyopathy.
Area of Science:
- Cardiovascular Biology
- Mitochondrial Medicine
- Cellular Metabolism
Background:
- Ischemic cardiomyopathy is a leading cause of death in the elderly, with poorly understood molecular underpinnings.
- Voltage-dependent anion channel 1 (VDAC1) and Ferritinophagy regulatory element binding protein (FTMT) are implicated in myocardial infarction with reperfusion (MI/RI) injury.
- The precise roles of VDAC1 and FTMT in MI/RI pathogenesis require further elucidation.
Purpose of the Study:
- To investigate the molecular mechanisms of VDAC1 and FTMT in MI/RI.
- To determine the therapeutic potential of FTMT in mitigating MI/RI-induced damage.
Main Methods:
- In vitro H9c2 cell models of A/R and in vivo Sprague-Dawley rat MI/RI models were utilized.
- VDAC1 and FTMT levels were modulated via overexpression and knockdown techniques.
- Biochemical assays, oxidative stress markers, mitochondrial function assessments, and histological analyses were performed.
Main Results:
- VDAC1 levels increased, while FTMT levels decreased in A/R conditions.
- VDAC1 overexpression exacerbated A/R injury, increasing oxidative stress and iron deposition.
- FTMT overexpression reversed these detrimental effects, improving cardiac function, reducing infarct size, and inhibiting ferroptosis in vivo and in vitro.
- FTMT mitigated mitochondrial dysfunction by downregulating VDAC1 and PTGS2, upregulating GPX4, and stabilizing mitochondrial membrane potential.
Conclusions:
- FTMT overexpression alleviates MI/RI injury by inhibiting ferroptosis and improving mitochondrial function through VDAC1 regulation.
- This study identifies FTMT as a novel therapeutic target for treating ischemic cardiomyopathy.
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