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A20 prevents obesity-induced development of cardiac dysfunction
Wenjing Xu1,2, Cheng Wang1,2, Minglu Liang1
1Clinic Center of Human Gene Research, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, 1277 Jiefang Ave, Wuhan, 430000, China.
Abstract:
Obesity and an increased free fatty acid (FFA) level are tightly linked, leading to aberrant oxidative stress, inflammation, apoptosis, and progression to cardiovascular disorders. A20 is a ubiquitin-modifying enzyme that plays a significant role in the negative regulation of inflammatory response. Here, we study the role of A20 in obesity-induced heart injury and explore the underlying mechanisms. A20 expression was first increased in mouse hearts after 4 weeks of a high-fat diet (HFD) and then was gradually decreased in the following 20 weeks. Cardiac-specific supplementation with A20 via recombinant adeno-associated virus subtype 9 (rAAV9) could reverse myocardial dysfunction, hypertrophy and fibrosis in mice exposed to 24 weeks of HFD, along with reduced cardiac apoptosis and inflammation. The beneficial actions of A20 were closely associated with its ability to repress TAK1 activation and the downstream inhibition of P38, JNK1/2, and the NF-κB pathway. TAK1 over-expression could efficiently retard the above-mentioned positive effects of A20. Therefore, our data uncovered a novel function of A20 in obesity-induced heart injury and presented a therapeutic approach for the treatment of obesity-related cardiovascular disorders.
Key Messages:
A20 expression is downregulated in obesity-related hearts. A20 ameliorates HFD-induced lipid accumulation, ROS, inflammation, apoptosis, hypertrophy, fibrosis, and cardiac dysfunction. A20 represses TAK1 activation and the downstream inhibition of P38, JNK1/2, and the NF-κB pathway. TAK1 overexpression retards the beneficial effects of A20.
Insights
A20 protein protects against obesity-induced heart damage by reducing inflammation and cell death. Supplementing A20 in the heart offers a potential treatment for cardiovascular issues linked to obesity.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Obesity Research
Background:
- Obesity and elevated free fatty acids (FFA) contribute to oxidative stress, inflammation, and apoptosis, promoting cardiovascular disease.
- A20 is a key negative regulator of inflammatory responses.
Purpose of the Study:
- To investigate the role of A20 in obesity-induced heart injury.
- To explore the therapeutic potential of A20 in mitigating cardiovascular complications of obesity.
Main Methods:
- Mice were subjected to a high-fat diet (HFD) for up to 24 weeks.
- Cardiac-specific A20 supplementation was achieved using recombinant adeno-associated virus subtype 9 (rAAV9).
- Key signaling pathways including TAK1, P38, JNK1/2, and NF-κB were analyzed.
Main Results:
- A20 expression initially increased then decreased in HFD-induced obese mouse hearts.
- Cardiac A20 supplementation reversed HFD-induced myocardial dysfunction, hypertrophy, fibrosis, apoptosis, and inflammation.
- A20's protective effects were linked to the repression of TAK1 activation and downstream inflammatory pathways.
Conclusions:
- A20 plays a protective role against obesity-related cardiac injury.
- Cardiac-specific A20 delivery is a potential therapeutic strategy for obesity-associated cardiovascular disorders.
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