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A Flow Cytometry-based Assay for Measuring Mitochondrial Membrane Potential in Cardiac Myocytes After Hypoxia/Reoxygenation
Published on: July 13, 2018
Myocardial 14-3-3η protein protects against mitochondria mediated apoptosis
Remya Sreedhar1, Somasundaram Arumugam1, Rajarajan A Thandavarayan2
1Department of Clinical Pharmacology, Faculty of Pharmaceutical Sciences, Niigata University of Pharmacy and Applied Life Sciences, Niigata City 956-8603, Japan.
Insights
14-3-3η protein protects against heart cell death in type 2 diabetes. This study shows 14-3-3η prevents mitochondrial apoptosis via the Ask-1/JNK pathway in high-fat diet-induced type 2 diabetes.
Area of Science:
- Cardiovascular Biology
- Mitochondrial Medicine
- Diabetes Research
Background:
- 14-3-3η protein demonstrates cardioprotection in type 1 diabetes.
- Its role in mitochondrial apoptosis in type 2 diabetes remains unclear.
Purpose of the Study:
- To investigate the role of 14-3-3η protein in mitochondrial-mediated cardiomyocyte apoptosis in type 2 diabetes.
Main Methods:
- Utilized C57BL6/J mice with cardiac-specific dominant-negative 14-3-3η mutation (DN 14-3-3η).
- Administered high-fat diet (HFD) for 12 weeks, monitoring body weight and blood glucose.
- Assessed cardiac function via echocardiography and cardiomyocyte apoptosis using TUNEL staining.
- Analyzed mitochondrial protein expression (cytochrome c) and signaling pathways (Ask-1/JNK, NADPH oxidase) via Western blotting.
Main Results:
- DN 14-3-3η mice on HFD exhibited cardiac dysfunction (reduced fractional shortening/ejection fraction) and increased cardiomyocyte apoptosis.
- Reduced cytochrome c levels in mitochondria indicated cytoplasmic translocation.
- Increased NADPH oxidase subunits suggested oxidative stress.
- Decreased phospho-Ask-1 and increased Ask-1/phospho-JNK levels indicated Ask-1/JNK pathway activation.
Conclusions:
- 14-3-3η protein plays a protective role against mitochondrial-mediated cardiomyocyte apoptosis in HFD-induced type 2 diabetes.
- This protection involves the Ask-1/JNK signaling pathway.
Abstract:
There is a definite cardioprotective role for 14-3-3η protein against pressure overload induced cardiac hypertrophy and streptozotocin induced cardiac dysfunction in type 1 diabetes mellitus (DM). But it is not conclusive whether it has any influence on mitochondrial mediated cardiomyocyte apoptosis in type 2 DM. In order to test this hypothesis, we have used C57BL6/J (WT) mice with cardiac specific dominant negative mutation of 14-3-3η protein (DN 14-3-3η). Both WT and DN 14-3-3η mice were fed with high fat diet (HFD) for 12weeks. Their body weight and blood glucose levels were measured weekly and compared with standard diet (SD) fed mice. By the end of 12weeks, echocardiography was performed. Frozen myocardial sections were prepared to stain the apoptotic cardiomyocytes using TUNEL staining. DN 14-3-3η mice fed with HFD showed cardiac dysfunction as identified by the decreased fractional shortening and ejection fraction and increased cardiomyocyte apoptosis in TUNEL staining. Western blotting analysis using mitochondrial fraction of the ventricular tissue homogenates showed a significant reduction in the level of cytochrome c suggesting its translocation into cytoplasm, which may be crucial in inducing cardiomyocyte apoptosis. In addition, DN 14-3-3η mice depicted significantly increased levels of NADPH oxidase subunits suggesting oxidative stress, a significant reduction in phospho apoptosis signal-regulating kinase-1 (p-Ask-1) and increase in Ask-1 and phospho c-Jun N-terminal kinase (p-JNK) levels suggesting activation of Ask-1/JNK signaling. These results suggest that 14-3-3η has a protective role against mitochondria mediated cardiomyocyte apoptosis with the involvement of Ask-1/JNK signaling during HFD induced type 2 DM.
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