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Dynamic metabolism of endothelial triglycerides protects against atherosclerosis in mice

  • Nabil E. Boutagy
    ,
  • ,
  • Joseph W.M. Fowler
    ,
  • Hanming Zhang
    ,
  • Bal K. Chaube
    ,
  • Enric Esplugues
  • Vascular Biology and Therapeutics Program
    ,
  • Yale University
    ,
  • Boston Children's Hospital
    ,
  • Oklahoma Medical Research Foundation
    ,
  • University of Oklahoma
    ,
  • University of Illinois at Chicago
Research Output:
Contribution to journal
Article
Peer-review

Open access

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Metrics

SciVal
Citations
49
SciVal
FWCI
10.46
SciVal
Author count
17
SciVal
Paper percentile
99
SciVal
Top percentile
1
Scopus
Citations

Abstract

Blood vessels are continually exposed to circulating lipids, and elevation of ApoB-containing lipoproteins causes atherosclerosis. Lipoprotein metabolism is highly regulated by lipolysis, largely at the level of the capillary endothelium lining metabolically active tissues. How large blood vessels, the site of atherosclerotic vascular disease, regulate the flux of fatty acids (FAs) into triglyceride-rich (TG-rich) lipid droplets (LDs) is not known. In this study, we showed that deletion of the enzyme adipose TG lipase (ATGL) in the endothelium led to neutral lipid accumulation in vessels and impaired endothelial-dependent vascular tone and nitric oxide synthesis to promote endothelial dysfunction. Mechanistically, the loss of ATGL led to endoplasmic reticulum stress–induced inflammation in the endothelium. Consistent with this mechanism, deletion of endothelial ATGL markedly increased lesion size in a model of atherosclerosis. Together, these data demonstrate that the dynamics of FA flux through LD affects endothelial cell homeostasis and consequently large vessel function during normal physiology and in a chronic disease state.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

170453

Journal (Volume, Issue Number)

Journal of Clinical Investigation (Volume 134, Issue 4)

Publication milestones

  • Published - 15/02/2024

Publication status

Published - 15/02/2024

ISSN

0021-9738

Publication IDs

  • Scopus: 85185218308
  • PubMed: 38175710

Funding Details

This work was supported by NIH grants R35HL139945 and R01DK125492, an American Heart Association MERIT Award (to WCS), and K01DK124441 (to NEB).
FundersFunding numbers
NIH
R35HL139945, R01DK125492
NIH
-
AHA
K01DK124441
AHA
-