Epigenetic Regulation of Hepatic Lipid Metabolism by DNA Methylation

Author:

Wang Shirong1,Zha Lin12,Cui Xin1,Yeh Yu‐Te3,Liu Ruochuan4,Jing Jia1,Shi Huidong5,Chen Weiping6,Hanover John6,Yin Jun4,Yu Liqing3,Xue Bingzhong1,Shi Hang1ORCID

Affiliation:

1. Department of Biology Georgia State University Atlanta GA 30303 USA

2. The Northern Medical District Chinese PLA General Hospital Beijing 100094 China

3. Department of Internal Medicine University of Maryland School of Medicine Baltimore MD 21201 USA

4. Department of Chemistry and the Center for Diagnosis and Therapeutics Georgia State University Atlanta GA 30303

5. GRU Cancer Center and Department of Biochemistry and Molecular Biology Medical College of Georgia Augusta University Augusta GA 30912 USA

6. Genomic Core Lab of National Institute of Diabetes and Digestive and Kidney Diseases National Institutes of Health Bethesda MD 20855 USA

Abstract

AbstractWhile extensive investigations have been devoted to the study of genetic pathways related to fatty liver diseases, much less is known about epigenetic mechanisms underlying these disorders. DNA methylation is an epigenetic link between environmental factors (e.g., diets) and complex diseases (e.g., non‐alcoholic fatty liver disease). Here, it is aimed to study the role of DNA methylation in the regulation of hepatic lipid metabolism. A dynamic change in the DNA methylome in the liver of high‐fat diet (HFD)‐fed mice is discovered, including a marked increase in DNA methylation at the promoter of Beta‐klotho (Klb), a co‐receptor for the biological functions of fibroblast growth factor (FGF)15/19 and FGF21. DNA methyltransferases (DNMT) 1 and 3A mediate HFD‐induced methylation at the Klb promoter. Notably, HFD enhances DNMT1 protein stability via a ubiquitination‐mediated mechanism. Liver‐specific deletion of Dnmt1 or 3a increases Klb expression and ameliorates HFD‐induced hepatic steatosis. Single‐nucleus RNA sequencing analysis reveals pathways involved in fatty acid oxidation in Dnmt1‐deficient hepatocytes. Targeted demethylation at the Klb promoter increases Klb expression and fatty acid oxidation, resulting in decreased hepatic lipid accumulation. Up‐regulation of methyltransferases by HFD may induce hypermethylation of the Klb promoter and subsequent down‐regulation of Klb expression, resulting in the development of hepatic steatosis.

Funder

National Institutes of Health

National Science Foundation

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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