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◆ Circulation research2026-09-11

Obesity Increases Atherosclerosis Susceptibility via an Intertissue miR-30e-SLC7A11 Axis.

Chen Wang, Jianqing She, Xiaoli Qian, Haoyu Wu, Wenyang Hao, Xiao Liang, Ning Guo, Xulei Dai, Fangzhou He, Songyang He, Jin Zhang, Yuyang Lei, Xiaozhen Zhuo, Hongbing Li, Yongbai Luo, Kai Deng, Yi Liu, Shanshan Gao, Xiao Yuan, Hui Liu, Ting Bai, Ying Xiong, John Y-J Shyy, Zu-Yi Yuan

一句话结论 · In one sentence

Our multiomics approaches demonstrate that the adipose-derived miR-30e-5p downregulated SLC7A11 mRNA in ECs via tissue crosstalk. The resulting EC dysfunction led to obesity-related atherosclerosis in mice. These findings underscore a causality between obesity and atherosclerosis in the context of cardiovascular-kidney-metabolic syndrome.

原始摘要(英文原文)· Original abstract
BACKGROUND: With obesity as a risk factor for atherosclerotic disease, recent research suggests that adipose tissue in obese animal models and humans can generate endocrine-like molecules that affect arterial health. Previous studies showed that microRNA-30e (miR-30e) levels are elevated in atherosclerosis and solute carrier family 7 member 11 (SLC7A11), a cystine/glutamate transporter, is involved in atherogenesis. However, whether an endocrine-like link between the adipose-derived miR-30e-5p and SLC7A11 in the vascular endothelium can lead to obesity-caused atherosclerosis is unknown. METHODS: miRNA data mining and reverse transcription-polymerase chain reaction validations were used to demonstrate the positive association among serum levels of miR-30e-5p, obesity, and coronary arterial disease in human patients. Transcriptomics (bulk RNA sequencing and single-nucleus RNA sequencing), metabolomics, and in silico analysis were used to establish a miR-30e-5p-SLC7A11 regulation of central carbon metabolism, mitochondrial and endothelial cell (EC) function. Mouse models with EC-specific Slc7a11 knockout (EC-Slc7a11-/-) and gain- or loss-of- function of miR-30e-5p were used to elucidate the detrimental role of this endocrine-like axis in obesity-related atherosclerosis. RESULTS: The level of adipocyte-derived miR-30e-5p was significantly upregulated in obese human patients with coronary artery disease and in obese and atherosclerotic mice. Mediated through serum exosomes, the adipocyte-generated miR-30e-5p targeted SLC7A11 mRNA in vascular ECs. SLC7A11 deficiency due to miR-30e-5p targeting dysregulated glutamate/cystine metabolism, increased glycolysis, reduced oxidative phosphorylation, and impaired mitochondrial function. The EC dysfunction could be rectified by SLC7A11 overexpression or miR-30e-5p antagonism. Administration of exogenous miR-30e-5p or white adipose tissue-derived exosomes phenocopied the increased atherosclerosis in EC-Slc7a11-/- mice. In contrast, miR-30e-5p antagomir or GW4869 treatment reduced atherosclerosis in Apoe-/- and ob/ob mice. CONCLUSIONS: Our multiomics approaches demonstrate that the adipose-derived miR-30e-5p downregulated SLC7A11 mRNA in ECs via tissue crosstalk. The resulting EC dysfunction led to obesity-related atherosclerosis in mice. These findings underscore a causality between obesity and atherosclerosis in the context of cardiovascular-kidney-metabolic syndrome.
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Obesity Increases Atherosclerosis Susceptibility via an Intertissue miR-30e-SLC7A11 Axis. — 科研速览 Science Skim