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Parkin Regulates Mitochondrial Autophagy After Myocardial Infarction in Rats
Li Wu1, Xiemuziya Maimaitirexiati1, Yun Jiang1
1Department of Intensive Care Unit, Affiliated Tumor Hospital of Xinjiang Medical University, Urumqi, Xinjiang, China (mainland).
Abstract:
BACKGROUND To study the role of Parkin in the regulation of mitochondrial autophagy in the heart by assessing mitochondrial autophagy and changes in Parkin protein expression in rat myocardium after myocardial infarction (MI). MATERIAL AND METHODS Rats were randomly assigned to three groups: control, sham, and MI. Four weeks after induction of MI, ultrasonic examination of the rats was performed to measure left ventricular end systolic diameter (LVESD), left ventricular end diastolic diameter (LVEDD), left ventricular ejection fraction (EF), left ventricular fractional shortening (FS), and left ventricular diastolic/systolic volume. Rat myocardium was collected from each group and examined for changes in morphology, size, and amount of mitochondria and autophagosomes by transmission electronic microscopy. A Western blot was performed to analyze the levels of Parkin and the autophagy-related protein LC3. RESULTS Four weeks after MI, cardiac function of the MI rats was impaired compared with the control rats. Both LVESD and LVEDD were elevated in the MI rats (p<0.05) while EF was decreased, indicating that the MI model was constructed successfully. After MI, increased numbers of mitochondria and autophagosomes were observed in the myocardium (p<0.05), and the mitochondrial morphology was destroyed. Chloroquine (CQ) treatment increased the number of autophagosomes in the myocardium of the control rats (p<0.05) but not in MI rats (p>0.05). In addition, the levels of the autophagy-related proteins LC3II/LC3I were elevated in the myocardium after MI (p<0.05) and the activity of Parkin was significantly reduced (p<0.05). CONCLUSIONS Under conditions of chronic MI, mitochondrial dysfunction and disruption of autophagosomal clearance are associated with Parkin expression.
Insights
Myocardial infarction (MI) impairs cardiac function and mitochondrial autophagy in rats. Reduced Parkin activity is linked to disrupted autophagosome clearance and mitochondrial damage following MI.
Area of Science:
- Cardiovascular Biology
- Cellular Autophagy
- Mitochondrial Dynamics
Background:
- Myocardial infarction (MI) leads to significant cardiac dysfunction.
- Mitochondrial quality control, including autophagy, is crucial for cardiac health.
- The role of Parkin in cardiac mitochondrial autophagy post-MI requires investigation.
Purpose of the Study:
- To investigate the role of Parkin in regulating mitochondrial autophagy in the heart after myocardial infarction (MI).
- To assess changes in mitochondrial autophagy and Parkin protein expression in rat myocardium post-MI.
Main Methods:
- Induction of myocardial infarction (MI) in rats, followed by cardiac function assessment using echocardiography.
- Transmission electron microscopy to evaluate mitochondrial and autophagosome morphology and quantity.
- Western blotting to analyze Parkin and LC3 protein levels in myocardial tissue.
Main Results:
- MI rats exhibited impaired cardiac function, increased cardiac dimensions, and reduced ejection fraction.
- Increased numbers of mitochondria and autophagosomes, alongside disrupted mitochondrial morphology, were observed in MI myocardium.
- Elevated LC3II/LC3I ratios indicated increased autophagy, while Parkin activity was significantly reduced post-MI.
- Chloroquine treatment failed to increase autophagosomes in MI rats, suggesting impaired autophagic flux.
Conclusions:
- Chronic MI is associated with mitochondrial dysfunction and impaired autophagosomal clearance.
- Reduced Parkin activity plays a role in the disruption of mitochondrial autophagy following myocardial infarction.
- Parkin expression is linked to mitochondrial dysfunction and autophagosome clearance deficits in the context of chronic MI.
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