Back to Search Start Over

Endothelial c-Myc knockout disrupts metabolic homeostasis and triggers the development of obesity

Authors :
Jacqueline F. Machi
Isabella Altilio
Yue Qi
Alejo A. Morales
Diego H. Silvestre
Diana R. Hernandez
Nicolas Da Costa-Santos
Aline G. Santana
Mehrnoosh Neghabi
Parisa Nategh
Thiago L. Castro
João P. Werneck-de-Castro
Mahsa Ranji
Fabiana S. Evangelista
Roberto I. Vazquez-Padron
Ernesto Bernal-Mizrachi
Claudia O. Rodrigues
Source :
Frontiers in Cell and Developmental Biology, Vol 12 (2024)
Publication Year :
2024
Publisher :
Frontiers Media S.A., 2024.

Abstract

Introduction: Obesity is a major risk factor associated with multiple pathological conditions including diabetes and cardiovascular disease. Endothelial dysfunction is an early predictor of obesity. However, little is known regarding how early endothelial changes trigger obesity. In the present work we report a novel endothelial-mediated mechanism essential for regulation of metabolic homeostasis, driven by c-Myc.Methods: We used conditional knockout (EC-Myc KO) and overexpression (EC-Myc OE) mouse models to investigate the endothelial-specific role of c-Myc in metabolic homeostasis during aging and high-fat diet exposure. Body weight and metabolic parameters were collected over time and tissue samples collected at endpoint for biochemical, pathology and RNA-sequencing analysis. Animals exposed to high-fat diet were also evaluated for cardiac dysfunction.Results: In the present study we demonstrate that EC-Myc KO triggers endothelial dysfunction, which precedes progressive increase in body weight during aging, under normal dietary conditions. At endpoint, EC-Myc KO animals showed significant increase in white adipose tissue mass relative to control littermates, which was associated with sex-specific changes in whole body metabolism and increase in systemic leptin. Overexpression of endothelial c-Myc attenuated diet-induced obesity and visceral fat accumulation and prevented the development of glucose intolerance and cardiac dysfunction. Transcriptome analysis of skeletal muscle suggests that the protective effects promoted by endothelial c-Myc overexpression are associated with the expression of genes known to increase weight loss, energy expenditure and glucose tolerance.Conclusion: Our results show a novel important role for endothelial c-Myc in regulating metabolic homeostasis and suggests its potential targeting in preventing obesity and associated complications such as diabetes type-2 and cardiovascular dysfunction.

Details

Language :
English
ISSN :
2296634X
Volume :
12
Database :
Directory of Open Access Journals
Journal :
Frontiers in Cell and Developmental Biology
Publication Type :
Academic Journal
Accession number :
edsdoj.70b92df7ee8c4458b29ae8f173c4258e
Document Type :
article
Full Text :
https://doi.org/10.3389/fcell.2024.1407097