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Histone methylation and vascular biology.

Xiang WeiXin YiXue-Hai ZhuDing-Sheng Jiang
Published in: Clinical epigenetics (2020)
The vasculature not only transports oxygenated blood, metabolites, and waste products but also serves as a conduit for hormonal communication between distant tissues. Therefore, it is important to maintain homeostasis within the vasculature. Recent studies have greatly expanded our understanding of the regulation of vasculature development and vascular-related diseases at the epigenetic level, including by protein posttranslational modifications, DNA methylation, and noncoding RNAs. Integrating epigenetic mechanisms into the pathophysiologic conceptualization of complex and multifactorial vascular-related diseases may provide promising therapeutic approaches. Several reviews have presented detailed discussions of epigenetic mechanisms not including histone methylation in vascular biology. In this review, we primarily discuss histone methylation in vascular development and maturity, and in vascular diseases.
Keyphrases
  • dna methylation
  • genome wide
  • gene expression
  • systematic review
  • risk assessment
  • adipose tissue
  • polycystic ovary syndrome
  • protein protein
  • meta analyses