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Trans-10, cis-12 conjugated linoleic acid decreases de novo lipid synthesis in human adipocytes

机译:Trans-10,顺式12共轭亚油酸可减少人脂肪细胞中的从头脂质合成

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摘要

Conjugated linoleic acid (CLA) reduces adiposity in vivo. However, mechanisms mediating these changes are unclear. Therefore, we treated cultures of human adipocytes with trans-10, cis-12 (10,12) CLA, cis-9, trans-11 (9,11) CLA or other trans fatty acids (FA), and measured indices of lipid metabolism. The lipid-lowering effects of 10,12 CLA were unique, as other trans FA did not reduce TG content to the same extent. Using low levels of [(14)C]-CLA isomers, it was shown that both isomers were readily incorporated into acylglycerols and phospholipids, albeit at lower levels than [(14)C]-oleic or [(14)C]-linoleic acids. When using [(14)C]-acetic acid and [(14)C]-pyruvic acid as substrates, 30 μM 10,12 CLA, but not 9,11 CLA, decreased de novo synthesis of triglyceride, free FA, diacylglycerol, cholesterol esters, cardiolipin, phospholipids and ceramides within 3-24 h. Treatment with 30 μM 10,12 CLA, but not 9,11 CLA, decreased total cellular lipids within 3 days and the ratio of monounsaturated FA (MUFA) to saturated FA, and increased C18:0 acyl-CoA levels within 24 h. Consistent with these data, stearoyl-CoA desaturase (SCD)-1 mRNA and protein levels were down-regulated by 10,12 CLA within 7-12 h, respectively. The mRNA levels of liver X receptor (LXR)α and sterol regulatory element binding protein (SREBP)-1c, transcription factors that regulate SCD-1, were decreased by 10,12 CLA within 5 h. These data suggest that the isomer-specific decrease in de novo lipid synthesis by 10,12 CLA is due, in part, to the rapid repression of lipogenic transcription factors that regulate MUFA synthesis, suggesting an anti-obesity mechanism unique to this trans FA.
机译:共轭亚油酸(CLA)可降低体内肥胖。但是,调解这些变化的机制尚不清楚。因此,我们用反式10,顺式12(10,12)CLA,顺式9,反式11(9,11)CLA或其他反式脂肪酸(FA)处理了人脂肪细胞的培养物,并测量了脂质的指数代谢。 10,12 CLA的降脂作用是独特的,因为其他反式FA并没有相同程度地降低TG含量。使用低水平的[(14)C] -CLA异构体,已显示两种异构体都易于掺入酰基甘油和磷脂中,尽管其含量低于[(14)C]-油酸或[(14)C]-亚油酸。酸。当使用[(14)C]-乙酸和[(14)C]-丙酮酸作为底物时,30μM10,12 CLA,而不是9,11 CLA降低了甘油三酸酯,游离FA,二酰基甘油的从头合成, 3-24小时内胆固醇酯,心磷脂,磷脂和神经酰胺。用30μM10,12 CLA(而不是9,11 CLA)处理,可在3天内降低总细胞脂质,并且单不饱和FA(MUFA)与饱和FA的比例降低,并在24小时内提高C18:0酰基-CoA水平。与这些数据一致,硬脂酰辅酶A去饱和酶(SCD)-1 mRNA和蛋白质水平在7-12小时内分别被10,12 CLA下调。肝脏X受体(LXR)α和固醇调节元件结合蛋白(SREBP)-1c(调节SCD-1的转录因子)的mRNA水平在5小时内降低了10,12 CLA。这些数据表明,由10,12 CLA引起的从头脂质合成的异构体特异性下降部分归因于调节MUFA合成的脂肪生成转录因子的快速抑制,表明该反式FA特有的抗肥胖机制。

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