Genome-wide Methylation Dynamics and Context-dependent Gene Expression Variability in Differentiating Preadipocytes

Author:

Yadav Binduma12ORCID,Singh Dalwinder13,Mantri Shrikant1ORCID,Rishi Vikas1ORCID

Affiliation:

1. Nutritional Biotechnology, National Agri-Food Biotechnology Institute , Mohali, Punjab 140306 , India

2. Regional Center for Biotechnology , Faridabad, Haryana 160014 , India

3. Department of Anatomy and Cell Biology, Western University , London, Ontario N6A 5C1 , Canada

Abstract

Abstract Obesity, characterized by the accumulation of excess fat, is a complex condition resulting from the combination of genetic and epigenetic factors. Recent studies have found correspondence between DNA methylation and cell differentiation, suggesting a role of the former in cell fate determination. There is a lack of comprehensive understanding concerning the underpinnings of preadipocyte differentiation, specifically when cells are undergoing terminal differentiation (TD). To gain insight into dynamic genome-wide methylation, 3T3 L1 preadipocyte cells were differentiated by a hormone cocktail. The genomic DNA was isolated from undifferentiated cells and 4 hours, 2 days postdifferentiated cells, and 15 days TD cells. We employed whole-genome bisulfite sequencing (WGBS) to ascertain global genomic DNA methylation alterations at single base resolution as preadipocyte cells differentiate. The genome-wide distribution of DNA methylation showed similar overall patterns in pre-, post-, and terminally differentiated adipocytes, according to WGBS analysis. DNA methylation decreases at 4 hours after differentiation initiation, followed by methylation gain as cells approach TD. Studies revealed novel differentially methylated regions (DMRs) associated with adipogenesis. DMR analysis suggested that though DNA methylation is global, noticeable changes are observed at specific sites known as “hotspots.” Hotspots are genomic regions rich in transcription factor (TF) binding sites and exhibit methylation-dependent TF binding. Subsequent analysis indicated hotspots as part of DMRs. The gene expression profile of key adipogenic genes in differentiating adipocytes is context-dependent, as we found a direct and inverse relationship between promoter DNA methylation and gene expression.

Publisher

The Endocrine Society

Reference86 articles.

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