Epigenetic Regulation of Endothelial Cell Function by Nucleic Acid Methylation in Cardiac Homeostasis and Disease

被引:0
作者
Adam Russell-Hallinan
Chris J. Watson
Denis O’Dwyer
David J. Grieve
Karla M. O’Neill
机构
[1] Queen’s University Belfast,Wellcome
来源
Cardiovascular Drugs and Therapy | 2021年 / 35卷
关键词
Epigenetics; Endothelial cells; DNA methylation; RNA methylation; Heart failure;
D O I
暂无
中图分类号
学科分类号
摘要
Pathological remodelling of the myocardium, including inflammation, fibrosis and hypertrophy, in response to acute or chronic injury is central in the development and progression of heart failure (HF). While both resident and infiltrating cardiac cells are implicated in these pathophysiological processes, recent evidence has suggested that endothelial cells (ECs) may be the principal cell type responsible for orchestrating pathological changes in the failing heart. Epigenetic modification of nucleic acids, including DNA, and more recently RNA, by methylation is essential for physiological development due to their critical regulation of cellular gene expression. As accumulating evidence has highlighted altered patterns of DNA and RNA methylation in HF at both the global and individual gene levels, much effort has been directed towards defining the precise role of such cell-specific epigenetic changes in the context of HF. Considering the increasingly apparent crucial role that ECs play in cardiac homeostasis and disease, this article will specifically focus on nucleic acid methylation (both DNA and RNA) in the failing heart, emphasising the key influence of these epigenetic mechanisms in governing EC function. This review summarises current understanding of DNA and RNA methylation alterations in HF, along with their specific role in regulating EC function in response to stress (e.g. hyperglycaemia, hypoxia). Improved appreciation of this important research area will aid in further implicating dysfunctional ECs in HF pathogenesis, whilst informing development of EC-targeted strategies and advancing potential translation of epigenetic-based therapies for specific targeting of pathological cardiac remodelling in HF.
引用
收藏
页码:1025 / 1044
页数:19
相关论文
共 936 条
[61]  
Adamiak M(2017)Epigenetic modification of MicroRNA-200b contributes to diabetic vasculopathy Mol Ther 25 2664-224
[62]  
Mayourian J(2016)Dynamic DNA methylation of matrix metalloproteinase-9 in the development of diabetic retinopathy Lab Investig 96 2859-3199
[63]  
Sassi Y(2015)Epigenetic regulation of placenta-specific 8 contributes to altered function of endothelial colony-forming cells exposed to intrauterine gestational diabetes mellitus Diabetes 64 2964-43
[64]  
Liang Y(2018)Reduced mRNA and protein expression levels of Tet methylcytosine dioxygenase 3 in endothelial progenitor cells of patients of type 2 diabetes with peripheral artery disease Front Immunol 9 1222-956
[65]  
Agarwal N(2011)Loss of methyl-CpG-binding domain protein 2 enhances endothelial angiogenesis and protects mice against hind-limb ischemic injury Circulation 123 1263-19110
[66]  
Favero G(2016)Hypoxia-induced endothelial-mesenchymal transition is associated with RASAL1 promoter hypermethylation in human coronary endothelial cells FEBS Lett 590 1519-371
[67]  
Paganelli C(2017)Intracellular adenosine regulates epigenetic programming in endothelial cells to promote angiogenesis EMBO Molecular Medicine 9 218-501
[68]  
Buffoli B(2006)Promoter region methylation and reduced expression of thrombospondin-1 after oxygen-glucose deprivation in murine cerebral endothelial cells J Cereb Blood Flow Metab 26 3187-8
[69]  
Rodella LF(2014)Epigenetic mechanism in regulation of endothelial function by disturbed flow: induction of DNA hypermethylation by DNMT1 Cell Mol Bioeng 7 32-26781
[70]  
Rezzani R(2014)Flow-dependent epigenetic DNA methylation regulates endothelial gene expression and atherosclerosis J Clin Invest 124 944-250