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Published on: May 19, 2023
Loss of Endothelial FTO Antagonizes Obesity-Induced Metabolic and Vascular Dysfunction
Nenja Krüger1, Lauren A Biwer1,2, Miranda E Good1
1From the Robert M. Berne Cardiovascular Research Center (N.K., L.A.B., M.E.G., C.A.R., A.G.W., L.J.D., S.M., E.H.M., V.S., A.K.B., N.L., S.K.S., B.E.I.), University of Virginia School of Medicine, Charlottesville.
Rationale:
Increasing prevalence of obesity and its associated risk with cardiovascular diseases demands a better understanding of the contribution of different cell types within this complex disease for developing new treatment options. Previous studies could prove a fundamental role of FTO (fat mass and obesity-associated protein) within obesity; however, its functional role within different cell types is less understood.
Objectives:
We identify endothelial FTO as a previously unknown central regulator of both obesity-induced metabolic and vascular alterations.
Methods And Results:
We generated endothelial Fto-deficient mice and analyzed the impact of obesity on those mice. While the loss of endothelial FTO did not influence the development of obesity and dyslipidemia, it protected mice from high-fat diet-induced glucose intolerance and insulin resistance by increasing AKT (protein kinase B) phosphorylation in endothelial cells and skeletal muscle. Furthermore, loss of endothelial FTO prevented the development of obesity-induced hypertension by preserving myogenic tone in resistance arteries. In Fto-deficient arteries, microarray analysis identified upregulation of L-Pgds with significant increases in prostaglandin D2 levels. Blockade of prostaglandin D2 synthesis inhibited the myogenic tone protection in resistance arteries of endothelial Fto-deficient mice on high-fat diet; conversely, direct addition of prostaglandin D2 rescued myogenic tone in high-fat diet-fed control mice. Myogenic tone was increased in obese human arteries with FTO inhibitors or prostaglandin D2 application.
Conclusions:
These data identify endothelial FTO as a previously unknown regulator in the development of obesity-induced metabolic and vascular changes, which is independent of its known function in regulation of obesity.
Insights
Endothelial FTO regulates obesity-induced metabolic and vascular changes, independent of its role in obesity itself. This finding offers new therapeutic targets for cardiovascular diseases linked to obesity.
Area of Science:
- Cardiovascular Biology
- Metabolic Disease Research
- Obesity Pathogenesis
Background:
- Obesity and cardiovascular diseases are rising globally, necessitating a deeper understanding of cellular contributions.
- The fat mass and obesity-associated protein (FTO) is implicated in obesity, but its cell-specific functions remain unclear.
Purpose of the Study:
- To investigate the role of endothelial FTO in obesity-induced metabolic and vascular alterations.
- To identify novel therapeutic targets for obesity-related complications.
Main Methods:
- Generated endothelial FTO-deficient mice for obesity studies.
- Assessed metabolic parameters (glucose intolerance, insulin resistance) and vascular function (myogenic tone).
- Utilized microarray analysis and prostaglandin D2 measurements in arterial tissues.
Main Results:
- Endothelial FTO deficiency protected against diet-induced glucose intolerance and insulin resistance.
- Loss of endothelial FTO preserved myogenic tone in resistance arteries, preventing hypertension.
- Upregulation of L-Pgds and increased prostaglandin D2 levels were observed in FTO-deficient arteries.
Conclusions:
- Endothelial FTO is a novel regulator of obesity-induced metabolic and vascular changes.
- Its function in these processes is independent of its known role in obesity regulation.
- Targeting endothelial FTO or prostaglandin D2 pathways may offer therapeutic strategies for obesity-related cardiovascular issues.
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