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Deficiency of NPGP x, an oxidative stress sensor, leads to obesity in mice and human
Author(s) -
Chang YiCheng,
Yu YuHsiang,
Shew JinYuh,
Lee WeiJei,
Hwang JueyJen,
Chen YenHui,
Chen YetRan,
Wei PeiChi,
Chuang LeeMing,
Lee WenHwa
Publication year - 2013
Publication title -
embo molecular medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.923
H-Index - 107
eISSN - 1757-4684
pISSN - 1757-4676
DOI - 10.1002/emmm.201302679
Subject(s) - oxidative stress , adipose tissue , adipogenesis , reactive oxygen species , endocrinology , adipocyte , medicine , oxidative phosphorylation , chemistry , biology , microbiology and biotechnology , biochemistry
Elevated oxidative stress is closely associated with obesity. Emerging evidence shows that instead of being a consequence of obesity, oxidative stress may also contribute to fat formation. Nonselenocysteine‐containing phospholipid hydroperoxide glutathione peroxidase (NPGPx) is a conserved oxidative stress sensor/transducer and deficiency of NPGPx causes accumulation of reactive oxygen species (ROS). In this communication, we show that NPGPx was highly expressed in preadipocytes of adipose tissue. Deficiency of NPGPx promoted preadipocytes to differentiate to adipocytes via ROS‐dependent dimerization of protein kinase A regulatory subunits and activation of CCAAT/enhancer‐binding protein beta (C/EBPβ). This enhanced adipogenesis was alleviated by antioxidant N ‐acetylcysteine (NAC). Consistently, NPGPx‐deficient mice exhibited markedly increased fat mass and adipocyte hypertrophy, while treatment with NAC ablated these phenotypes. Furthermore, single nucleotide polymorphisms (SNPs) in human NPGPx gene, which correlated with lower NPGPx expression level in adipose tissue, were associated with higher body mass index (BMI) in several independent human populations. These results indicate that NPGPx protects against fat accumulation in mice and human via modulating ROS, and highlight the importance of targeting redox homeostasis in obesity management.

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