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Mechanism of Regulation of Adipocyte Numbers in Adult Organisms Through Differentiation and Apoptosis Homeostasis
Published on: June 3, 2016
Ischemia-induced cardiac dysfunction is exacerbated in adiponectin-knockout mice due to impaired autophagy flux
Hye Kyoung Sung1, Jialing Tang1, James Won Suk Jahng1
1Department of Biology, York University, Toronto, Ontario, Canada.
Abstract:
Strategies to enhance autophagy flux have been suggested to improve outcomes in cardiac ischemic models. We explored the role of adiponectin in mediating cardiac autophagy under ischemic conditions induced by permanent coronary artery ligation. We studied the molecular mechanisms underlying adiponectin's cardio-protective effects in adiponectin knockout (Ad-KO) compared with wild-type (WT) mice subjected to ischemia by coronary artery ligation and H9c2 cardiomyocyte cell line exposed to hypoxia. Systemic infusion of a cathepsin-B activatable near-infrared probe as a biomarker for autophagy and detection via noninvasive three-dimensional fluorescence molecular tomography combined with computerized tomography to quantitate temporal changes, indicated increased activity in the myocardium of WT mice after myocardial infarction which was attenuated in Ad-KO. Seven days of ischemia increased myocardial adiponectin accumulation and elevated ULK1/AMPK phosphorylation and autophagy assessed by Western blotting for LC3 and p62, an outcome not observed in Ad-KO mice. Cell death, assessed by TUNEL analysis and the ratio of Bcl-2:Bax, plus cardiac dysfunction, measured using echocardiography with strain analysis, were exacerbated in Ad-KO mice. Using cellular models, we observed that adiponectin stimulated autophagy flux in isolated primary adult cardiomyocytes and increased basal and hypoxia-induced autophagy in H9c2 cells. Real-time temporal analysis of caspase-3/7 activation and caspase-3 Western blot indicated that adiponectin suppressed activation by hypoxia. Hypoxia-induced mitochondrial reactive oxygen species production and cell death were also attenuated by adiponectin. Importantly, the ability of adiponectin to reduce caspase-3/7 activation and cell death was not observed in autophagy-deficient cells generated by CRISPR-mediated deletion of Atg7. Collectively, our data indicate that adiponectin acts in an autophagy-dependent manner to attenuate cardiomyocyte caspase-3/7 activation and cell death in response to hypoxia in vitro and ischemia in mice.
Insights
Adiponectin enhances autophagy, protecting the heart from ischemia and hypoxia. This study shows adiponectin
Area of Science:
- Cardiovascular Biology
- Cellular Metabolism
- Autophagy Research
Background:
- Autophagy flux enhancement is a potential strategy for improving cardiac outcomes in ischemic conditions.
- Adiponectin's role in mediating cardiac autophagy during ischemia requires further investigation.
Purpose of the Study:
- To explore the role of adiponectin in regulating cardiac autophagy under ischemic conditions.
- To elucidate the molecular mechanisms behind adiponectin's cardio-protective effects during myocardial infarction and hypoxia.
Main Methods:
- Utilized adiponectin knockout (Ad-KO) and wild-type (WT) mice subjected to permanent coronary artery ligation.
- Employed H9c2 cardiomyocyte cell lines exposed to hypoxia for in vitro studies.
- Assessed autophagy flux using a cathepsin-B activatable near-infrared probe and 3D fluorescence molecular tomography.
- Quantified molecular changes via Western blotting (LC3, p62, ULK1/AMPK phosphorylation) and measured cell death (TUNEL, Bcl-2:Bax ratio).
- Evaluated cardiac function using echocardiography with strain analysis and caspase activity assays.
Main Results:
- Myocardial infarction led to increased autophagy in WT mice, an effect blunted in Ad-KO mice.
- Adiponectin accumulation and enhanced autophagy markers (ULK1/AMPK phosphorylation, LC3, p62) were observed in WT mice post-ischemia but not in Ad-KO mice.
- Adiponectin treatment stimulated autophagy in cardiomyocytes and suppressed hypoxia-induced caspase-3/7 activation and cell death.
- Adiponectin's protective effects were dependent on autophagy, as demonstrated in autophagy-deficient cells (Atg7 deletion).
Conclusions:
- Adiponectin plays a crucial role in mediating cardiac autophagy during ischemia.
- Adiponectin exerts cardio-protective effects by promoting autophagy-dependent attenuation of cardiomyocyte cell death.
- These findings highlight adiponectin as a potential therapeutic target for ischemic heart disease.
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