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Sample Preparation to Bioinformatics Analysis of DNA Methylation: Association Strategy for Obesity and Related Trait Studies
Published on: May 6, 2022
Proteomics analysis of human obesity reveals the epigenetic factor HDAC4 as a potential target for obesity
Mohamed Abu-Farha1, Ali Tiss, Jehad Abubaker
1Department of Biomedical Research, Dasman Diabetes Institute, Kuwait, Kuwait.
Abstract:
Sedentary lifestyle and excessive energy intake are prominent contributors to obesity; a major risk factors for the development of insulin resistance, type 2 diabetes and cardiovascular diseases. Elucidating the molecular mechanisms underlying these chronic conditions is of relevant importance as it might lead to the identification of novel anti-obesity targets. The purpose of the current study is to investigate differentially expressed proteins between lean and obese subjects through a shot-gun quantitative proteomics approach using peripheral blood mononuclear cells (PBMCs) extracts as well as potential modulation of those proteins by physical exercise. Using this approach, a total of 47 proteins showed at least 1.5 fold change between lean and obese subjects. In obese, the proteomic profiling before and after 3 months of physical exercise showed differential expression of 38 proteins. Thrombospondin 1 (TSP1) was among the proteins that were upregulated in obese subjects and then decreased by physical exercise. Conversely, the histone deacetylase 4 (HDAC4) was downregulated in obese subjects and then induced by physical exercise. The proteomic data was further validated by qRT-PCR, Western blot and immunohistochemistry in both PBMCs and adipose tissue. We also showed that HDAC4 levels correlated positively with maximum oxygen consumption (VO2 Max) but negatively with body mass index, percent body fat, and the inflammatory chemokine RANTES. In functional assays, our data indicated that ectopic expression of HDAC4 significantly impaired TNF-α-dependent activation of NF-κB, establishing thus a link between HDAC4 and regulation of the immune system. Together, the expression pattern of HDAC4 in obese subjects before and after physical exercise, its correlation with various physical, clinical and metabolic parameters along with its inhibitory effect on NF-κB are suggestive of a protective role of HDAC4 against obesity. HDAC4 could therefore represent a potential therapeutic target for the control and management of obesity and presumably insulin resistance.
Insights
Histone deacetylase 4 (HDAC4) is downregulated in obesity but increases with physical exercise, suggesting a protective role against obesity and insulin resistance. This protein may be a novel therapeutic target for obesity management.
Area of Science:
- Metabolomics
- Molecular Biology
- Exercise Physiology
Background:
- Obesity is a major risk factor for insulin resistance, type 2 diabetes, and cardiovascular diseases.
- Understanding the molecular mechanisms of obesity can identify novel anti-obesity targets.
- Sedentary lifestyles and excessive energy intake are key contributors to obesity.
Purpose of the Study:
- Investigate differentially expressed proteins in lean versus obese subjects.
- Explore the modulation of these proteins by physical exercise.
- Identify potential therapeutic targets for obesity and related conditions.
Main Methods:
- Shot-gun quantitative proteomics on peripheral blood mononuclear cells (PBMCs).
- Proteomic profiling before and after a 3-month physical exercise intervention.
- Validation using qRT-PCR, Western blot, and immunohistochemistry.
- Functional assays assessing the effect of histone deacetylase 4 (HDAC4) on NF-κB activation.
Main Results:
- 47 proteins showed significant differential expression between lean and obese subjects.
- 38 proteins were differentially expressed in obese subjects before and after exercise.
- Histone deacetylase 4 (HDAC4) was downregulated in obese subjects and upregulated by physical exercise.
- HDAC4 levels correlated positively with VO2 Max and negatively with BMI, body fat, and RANTES.
- Ectopic HDAC4 expression inhibited TNF-α-dependent NF-κB activation.
Conclusions:
- HDAC4 exhibits a protective role against obesity, evidenced by its expression pattern and functional effects.
- HDAC4 may serve as a potential therapeutic target for obesity and insulin resistance management.
- Physical exercise modulates HDAC4 expression, linking it to improved metabolic health.
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