中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
RPS3A positively regulates the mitochondrial function of human periaortic adipose tissue and is associated with coronary artery diseases

文献类型:期刊论文

作者Tang, Yan1,2; Mu, Wenjuan1,2; Zou, Ying1,2; Qian, Shuwen1,2; Zhang, Fuchuang1,2; Pan, Jiabao1,2; Wang, Yina1,2; Huang, Haiyan1,2; Pan, Dongning1,2; Yang, Pengyuan1,2
刊名CELL DISCOVERY
出版日期2018
卷号4期号:1页码:52
关键词Cardiovascular-disease Brown Fat Ribosomal-proteins Epicardial Fat Adipocyte Differentiation Adult Humans C/ebp-beta Atherosclerosis Obesity Thermogenesis
ISSN号2056-5968
DOI10.1038/s41421-018-0041-2
文献子类Article
英文摘要

Pericardial adipose tissue, which comprises both epicardial adipose tissue (EAT) and paracardial adipose tissue (PAT), has recently been recognized as a novel factor in the pathophysiology of cardiovascular diseases, especially coronary artery disease (CAD). The goal of this study was to evaluate differences in the brown-like characteristic and proteome among human EAT, PAT, and subcutaneous adipose tissue (SAT) to identify candidate molecules causing CAD. Uncoupling protein 1 (UCP-1) and other brown-related proteins were highly expressed in pericardial adipose tissue but was weakly expressed in SAT from the same non-CAD patient. Moreover, pericardial adipose tissues displayed a higher thermogenesis than SAT. However, brown-related genes were lower in CAD pericardial fat. Remarkably, there were lower levels of metabolic enzymes involved in glycolysis, tricarboxylic acid cycle, and fatty acid metabolism in pericardial adipose tissues of CAD. EAT is an organ adjacent to aortic root without anatomy barriers, which differs from PAT. We found that the expression of ribosomal protein S3A (RPS3A) was decreased in human EAT as well as in mouse perivascular adipose tissue (PVAT). Knockdown of RPS3A significantly inhibited adipocyte differentiation in preadipocytes and impaired the function of mitochondria in mature adipocytes. Moreover, RPS3A knockdown in mouse periaortic adipose tissue impaired browning of PVAT, accelerated vascular inflammation, and atherosclerosis progression. Mechanistically, RPS3A can migrate to the mitochondria to maintain the function of brown adipocytes. These findings provide compelling evidence that RPS3A was a key factor for modulating the brown fat-specific gene UCP-1 and carbon metabolic enzymes in EAT for preventing CAD.

WOS研究方向Cell Biology
语种英语
WOS记录号WOS:000442328600001
版本出版稿
源URL[http://202.127.25.143/handle/331003/3461]  
专题生化所2018年发文
通讯作者Tang, Qi-qun; Mei, Ju; Zeng, Rong
作者单位1.Fudan Univ, Key Lab Metab & Mol Med, Chinese Minist Educ, Zhongshan Hosp,Sch Basic Med Sci,Dept Biochem & M, Shanghai 200032, Peoples R China;
2.Fudan Univ, Dept Endocrinol, Zhongshan Hosp, Shanghai 200032, Peoples R China;
3.Shanghai Jiao Tong Univ, Med Coll, Dept Cardiothorac Surg, Xinhua Hosp, Shanghai 200032, Peoples R China;
4.Chinese Acad Sci, Key Lab Syst Biol, Inst Biochem & Cell Biol, Shanghai Inst Biol Sci, Shanghai, Peoples R China
推荐引用方式
GB/T 7714
Tang, Yan,Mu, Wenjuan,Zou, Ying,et al. RPS3A positively regulates the mitochondrial function of human periaortic adipose tissue and is associated with coronary artery diseases[J]. CELL DISCOVERY,2018,4(1):52.
APA Tang, Yan.,Mu, Wenjuan.,Zou, Ying.,Qian, Shuwen.,Zhang, Fuchuang.,...&Zeng, Rong.(2018).RPS3A positively regulates the mitochondrial function of human periaortic adipose tissue and is associated with coronary artery diseases.CELL DISCOVERY,4(1),52.
MLA Tang, Yan,et al."RPS3A positively regulates the mitochondrial function of human periaortic adipose tissue and is associated with coronary artery diseases".CELL DISCOVERY 4.1(2018):52.

入库方式: OAI收割

来源:上海生物化学与细胞生物学研究所

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