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Mechanosensitive super-enhancers regulate genes linked to atherosclerosis in endothelial cells.
Li, Jin; Zhu, Jiayu; Gray, Olivia; Sobreira, Débora R; Wu, David; Huang, Ru-Ting; Miao, Bernadette; Sakabe, Noboru J; Krause, Matthew D; Kaikkonen, Minna U; Romanoski, Casey E; Nobrega, Marcelo A; Fang, Yun.
Affiliation
  • Li J; Committee on Molecular Metabolism and Nutrition, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Zhu J; Department of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Gray O; Department of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Sobreira DR; Department of Human Genetics, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Wu D; Department of Human Genetics, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Huang RT; Committee on Molecular Metabolism and Nutrition, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Miao B; Department of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Sakabe NJ; Department of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Krause MD; Department of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Kaikkonen MU; Department of Human Genetics, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Romanoski CE; Department of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL, USA.
  • Nobrega MA; A.I.Virtanen Institute for Molecular Sciences, University of Eastern Finland, Kuopio, Finland.
  • Fang Y; Department of Cellular and Molecular Medicine, University of Arizona, Tucson, AZ, USA.
J Cell Biol ; 223(3)2024 03 04.
Article in En | MEDLINE | ID: mdl-38231044
ABSTRACT
Vascular homeostasis and pathophysiology are tightly regulated by mechanical forces generated by hemodynamics. Vascular disorders such as atherosclerotic diseases largely occur at curvatures and bifurcations where disturbed blood flow activates endothelial cells while unidirectional flow at the straight part of vessels promotes endothelial health. Integrated analysis of the endothelial transcriptome, the 3D epigenome, and human genetics systematically identified the SNP-enriched cistrome in vascular endothelium subjected to well-defined atherosclerosis-prone disturbed flow or atherosclerosis-protective unidirectional flow. Our results characterized the endothelial typical- and super-enhancers and underscored the critical regulatory role of flow-sensitive endothelial super-enhancers. CRISPR interference and activation validated the function of a previously unrecognized unidirectional flow-induced super-enhancer that upregulates antioxidant genes NQO1, CYB5B, and WWP2, and a disturbed flow-induced super-enhancer in endothelium which drives prothrombotic genes EDN1 and HIVEP in vascular endothelium. Our results employing multiomics identify the cis-regulatory architecture of the flow-sensitive endothelial epigenome related to atherosclerosis and highlight the regulatory role of super-enhancers in mechanotransduction mechanisms.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Mechanotransduction, Cellular / Endothelial Cells / Atherosclerosis Limits: Humans Language: En Journal: J Cell Biol Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Mechanotransduction, Cellular / Endothelial Cells / Atherosclerosis Limits: Humans Language: En Journal: J Cell Biol Year: 2024 Document type: Article