4.6 Article

Isomer-specific regulation of metabolism and PPARγ signaling by CLA in human preadipocytes

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JOURNAL OF LIPID RESEARCH
卷 44, 期 7, 页码 1287-1300

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ELSEVIER
DOI: 10.1194/jlr.M300001-JLR200

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conjugated linoleic acid; fatty acids; lipid metabolism; glucose metabolism; triglycerides; peroxisome proliferator-activated receptor gamma

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Trans- 10, cis-12 conjugated linoleic acid (CLA) has previously been shown to be the CLA isomer responsible for CLA-induced reductions in body fat in animal models, and we have shown that this isomer, but not the cis-9, trans-11 CIA isomer, specifically decreased triglyceride (TG) accumulation in primary human adiopcytes in vitro. Here we investigated the mechanism behind the isomer-specific, CLA-mediated reduction in TG accumulation in differentiating human preadipocytes. Traps-10,cis-12 CLA decreased insulin-stimulated glucose uptake and oxidation, and reduced insulin-dependent glucose transporter 4 gene expression. Furthermore, traps-10,cis-12 CIA reduced oleic acid uptake and oxidation when compared with all other treatments. In parallel to CLA's effects on metabolism, trans-10,cis-12 CIA decreased, whereas cis-9, trans-11 CIA increased, the expression of peroxisome proliferator-activated receptor gamma (PPARgamma) and several of its downstream target genes when compared with vehicle controls. Transient transfections demonstrated that both CIA isomers antagonized ligand-dependent activation of PPARgamma. Collectively, trans-10,cis-12, but not cis-9, traps-11, CLA decreased glucose and lipid uptake and oxidation and preadipocyte differentiation by altering preadipocyte gene transcription in a manner that appeared to be due, in part, to decreased PPARgamma expression.

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