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Updated: Feb 15, 2026

Quantification of Atherosclerosis in Mice
Published on: June 12, 2019
MitoNEET in Perivascular Adipose Tissue Blunts Atherosclerosis under Mild Cold Condition in Mice
Wenhao Xiong1,2, Xiangjie Zhao2, Minerva T Garcia-Barrio2
1Key Laboratory for Atherosclerology of Hunan Province, Institute of Cardiovascular Disease, University of South China, Hengyang, China.
Abstract:
Background: Perivascular adipose tissue (PVAT), which surrounds most vessels, is de facto a distinct functional vascular layer actively contributing to vascular function and dysfunction. PVAT contributes to aortic remodeling by producing and releasing a large number of undetermined or less characterized factors that could target endothelial cells and vascular smooth muscle cells, and herein contribute to the maintenance of vessel homeostasis. Loss of PVAT in mice enhances atherosclerosis, but a causal relationship between PVAT and atherosclerosis and the possible underlying mechanisms remain to be addressed. The CDGSH iron sulfur domain 1 protein (referred to as mitoNEET), a mitochondrial outer membrane protein, regulates oxidative capacity and adipose tissue browning. The roles of mitoNEET in PVAT, especially in the development of atherosclerosis, are unknown. Methods: The brown adipocyte-specific mitoNEET transgenic mice were subjected to cold environmental stimulus. The metabolic rates and PVAT-dependent thermogenesis were investigated. Additionally, the brown adipocyte-specific mitoNEET transgenic mice were cross-bred with ApoE knockout mice. The ensuing mice were subsequently subjected to cold environmental stimulus and high cholesterol diet challenge for 3 months. The development of atherosclerosis was investigated. Results: Our data show that mitoNEET mRNA was downregulated in PVAT of both peroxisome proliferator-activated receptor gamma coactivator 1-alpha (Pgc1α)- and beta (Pgc1β)-knockout mice which are sensitive to cold. MitoNEET expression was higher in PVAT of wild type mice and increased upon cold stimulus. Transgenic mice with overexpression of mitoNEET in PVAT were cold resistant, and showed increased expression of thermogenic genes. ApoE knockout mice with mitoNEET overexpression in PVAT showed significant downregulation of inflammatory genes and showed reduced atherosclerosis development upon high fat diet feeding when kept in a 16°C environment. Conclusion: mitoNEET in PVAT is associated with PVAT-dependent thermogenesis and prevents atherosclerosis development. The results of this study provide new insights on PVAT and mitoNEET biology and atherosclerosis in cardiovascular diseases.
Insights
Mitochondrial protein mitoNEET in perivascular adipose tissue (PVAT) promotes thermogenesis and protects against atherosclerosis development. Overexpression of mitoNEET in PVAT reduces inflammation and atherosclerosis in mice.
Area of Science:
- Cardiovascular Biology
- Adipose Tissue Physiology
- Mitochondrial Function
Background:
- Perivascular adipose tissue (PVAT) is a functional vascular layer impacting vascular homeostasis and disease.
- The role of CDGSH iron sulfur domain 1 protein (mitoNEET) in PVAT and its connection to atherosclerosis are unknown.
- PVAT's contribution to aortic remodeling and atherosclerosis development requires further investigation.
Purpose of the Study:
- To investigate the role of mitoNEET in PVAT-dependent thermogenesis.
- To determine the effect of mitoNEET in PVAT on atherosclerosis development.
- To explore the underlying mechanisms linking PVAT, mitoNEET, and cardiovascular disease.
Main Methods:
- Generated brown adipocyte-specific mitoNEET transgenic mice and subjected them to cold stimulus.
- Cross-bred mitoNEET transgenic mice with ApoE knockout mice, followed by cold stimulus and high-cholesterol diet.
- Assessed metabolic rates, PVAT thermogenesis, gene expression (thermogenic and inflammatory), and atherosclerosis development.
Main Results:
- MitoNEET expression in PVAT increased with cold stimulus in wild-type mice.
- MitoNEET overexpression in PVAT led to cold resistance and enhanced thermogenic gene expression.
- MitoNEET overexpression in PVAT reduced inflammatory gene expression and attenuated atherosclerosis in ApoE knockout mice.
Conclusions:
- MitoNEET in PVAT is linked to thermogenesis and plays a protective role against atherosclerosis.
- MitoNEET influences PVAT's thermogenic capacity and inflammatory profile.
- This study offers novel insights into PVAT biology, mitoNEET function, and cardiovascular disease pathogenesis.
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