Aim: To define the genomic distribution and function of DNA methylation changes during human adipogenesis. Methods: We isolated adipocyte-derived stem cells from 13 individuals and analyzed genome-wide DNA methylation and gene expression in cultured adipocyte-derived stem cells and mature adipocytes. Results: We observed altered DNA methylation of 11,947 CpG sites and altered expression of 11,830 transcripts after differentiation. De novo methylation was observed across all genomic elements. Co-existence of genes with both altered expression and DNA methylation was found in genes important for cell cycle and adipokine signaling. Conclusion: Human adipogenesis is associated with significant DNA methylation changes across the entire genome an...
Approximately 1.5 billion people worldwide are overweight or affected by obesity, and are at risk of...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Insight into the processes controlling adipogenesis is important in the battle against the obesity e...
Genome-wide DNA methylation profiling was performed of human mesenchymal stem cells (hMSCs) differen...
Objective: DNA methylation may be a stable epigenetic contributor to defining fat cell lineage. Meth...
The twin epidemics of obesity and type 2 diabetes (T2D) are a serious health, social, and economic i...
Epigenetic regulation, including DNA methylation, plays an important role in several differentiation...
Body fat distribution plays an important role in determining metabolic health. Whereas central obesi...
Adipose tissue is not homogenous as individual fat depots display regional variation in their physio...
Body fat distribution plays an important role in determining metabolic health. Whereas central obesi...
Epigenetic regulation, including DNA methylation, plays an important role in several differentiation...
Genome-wide DNA methylation profiling was performed in human mesenchymal stem cells (hMSCs) differen...
Park et al. shed light on the dynamics of DNA demethylation during adipocyte differentiation, which ...
Objective/methods: DNA methylation plays an important role in obesity and related metabolic complica...
Approximately 1.5 billion people worldwide are overweight or affected by obesity, and are at risk of...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Insight into the processes controlling adipogenesis is important in the battle against the obesity e...
Genome-wide DNA methylation profiling was performed of human mesenchymal stem cells (hMSCs) differen...
Objective: DNA methylation may be a stable epigenetic contributor to defining fat cell lineage. Meth...
The twin epidemics of obesity and type 2 diabetes (T2D) are a serious health, social, and economic i...
Epigenetic regulation, including DNA methylation, plays an important role in several differentiation...
Body fat distribution plays an important role in determining metabolic health. Whereas central obesi...
Adipose tissue is not homogenous as individual fat depots display regional variation in their physio...
Body fat distribution plays an important role in determining metabolic health. Whereas central obesi...
Epigenetic regulation, including DNA methylation, plays an important role in several differentiation...
Genome-wide DNA methylation profiling was performed in human mesenchymal stem cells (hMSCs) differen...
Park et al. shed light on the dynamics of DNA demethylation during adipocyte differentiation, which ...
Objective/methods: DNA methylation plays an important role in obesity and related metabolic complica...
Approximately 1.5 billion people worldwide are overweight or affected by obesity, and are at risk of...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...