Related Experiment Video
Updated: May 30, 2025

Author Spotlight: Assessing the Cardiovascular Profile of Patients with Metabolic Syndrome
Published on: September 27, 2024
The Impact of Modifiable Risk Factors on the Endothelial Cell Methylome and Cardiovascular Disease Development
1School of Cardiovascular and Metabolic Medicine & Sciences, British Heart Foundation Centre of Research Excellence, King's College London, SE5 9NU London, UK.
Insights
Environmental risk factors alter endothelial DNA methylation, potentially causing endothelial dysfunction and cardiovascular disease (CVD). This review examines how factors like diabetes and smoking impact the endothelium
Area of Science:
- Cardiovascular science
- Epigenetics
- Molecular biology
Background:
- Cardiovascular disease (CVD), including atherosclerosis, is a leading cause of death.
- Atherosclerosis involves arterial thickening and is linked to DNA methylation changes in vascular cells.
- Endothelial dysfunction (ED) is an early atherosclerosis marker, potentially driven by endothelial DNA methylation alterations.
Purpose of the Study:
- To review evidence linking environmental risk factors to endothelial DNA methylation changes.
- To explore how these epigenetic alterations contribute to endothelial dysfunction and CVD.
- To consider the mechanisms by which risk factors affect DNA methylation regulators (DNMTs and TETs).
Main Methods:
- Literature review of studies on environmental risk factors and endothelial epigenetics.
- Analysis of molecular mechanisms affecting DNA methyltransferases (DNMTs) and Ten Eleven Translocases (TETs).
- Discussion of the role of oxygen, alpha-ketoglutarate, and iron in TET protein activity.
Main Results:
- Environmental factors (diabetes, smoking, hypertension, etc.) modify the endothelial methylome.
- These modifications alter gene transcription and endothelial cell function.
- TET protein activity is sensitive to hypoxia, metabolic state, and redox, influencing the methylome.
Conclusions:
- Modifiable risk factors significantly impact endothelial DNA methylation patterns.
- Changes in the endothelial methylome, influenced by risk factors, are implicated in ED and CVD.
- Understanding these epigenetic mechanisms offers potential therapeutic targets for CVD prevention.
Abstract:
Cardiovascular disease (CVD) is the most prevalent cause of mortality and morbidity in the Western world. A common underlying hallmark of CVD is the plaque-associated arterial thickening, termed atherosclerosis. Although the molecular mechanisms underlying the aetiology of atherosclerosis remain unknown, it is clear that both its development and progression are associated with significant changes in the pattern of DNA methylation within the vascular cell wall. The endothelium is the major regulator of vascular homeostasis, and endothelial cell dysfunction (ED) is considered an early marker for atherosclerosis. Thus, it is speculated that changes in DNA methylation within endothelial cells may, in part, be causal in ED, leading to atherosclerosis and CVD generally. This review will evaluate the extensive evidence that environmental risk factors, known to be associated with atherosclerosis, such as diabetes, metabolic disorder, smoking, hypertension and hypercholesterolaemia etc. can affect the methylome of the endothelium and consequently act to alter gene transcription and function. Further, the potential mechanisms whereby such risk factors might impact upon the activities and/or specificities of the epigenetic writers and erasers which determine the methylome [the DNA methyl transferases (DNMTs) and Ten Eleven translocases (TETs)] are considered here. Notably, the TET proteins are members of the 2-oxoglutarate-dependent dioxygenase superfamily which require molecular oxygen (O2) and α-ketoglutarate (α-KG) as substrates and iron-2+ (Fe II) as a cofactor. This renders their activities subject to modulation by hypoxia, metabolic flux and cellular redox. The potential significance of this, with respect to the impact of modifiable risk factors upon the activities of the TETs and the methylome of the endothelium is discussed.
Related Concept Videos
Epigenetic Regulation
X-chromosome...
Regulation of Angiogenesis and Blood Supply

