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共轭亚油酸异构体反式-9,反式-11是肝脏X受体α的一种膳食来源激动剂。

The conjugated linoleic acid isomer trans-9,trans-11 is a dietary occurring agonist of liver X receptor alpha.

作者信息

Ecker Josef, Liebisch Gerhard, Patsch Wolfgang, Schmitz Gerd

机构信息

Institute of Clinical Chemistry, University of Regensburg, Germany.

出版信息

Biochem Biophys Res Commun. 2009 Oct 30;388(4):660-6. doi: 10.1016/j.bbrc.2009.08.048. Epub 2009 Aug 13.

Abstract

Conjugated linoleic acid (CLA) isomers are dietary fatty acids that modulate gene expression in many cell types. We have previously reported that specifically trans-9,trans-11 (t9,t11)-CLA induces expression of genes involved in lipid metabolism of human macrophages. To elucidate the molecular mechanism underlying this transcriptional activation, we asked whether t9,t11-CLA affects activity of liver X receptor (LXR) alpha, a major regulator of macrophage lipid metabolism. Here we show that t9,t11-CLA is a regulator of LXRalpha. We further demonstrate that the CLA isomer induces expression of direct LXRalpha target genes in human primary macrophages. Knockdown of LXRalpha with RNA interference in THP-1 cells inhibited t9,t11-CLA mediated activation of LXRalpha including its target genes. To evaluate the effective concentration range of t9,t11-CLA, human primary macrophages were treated with various doses of CLA and well known natural and synthetic LXR agonists and mRNA expression of ABCA1 and ABCG1 was analyzed. Incubation of human macrophages with 10 microM t9,t11-CLA led to a significant modulation of ABCA1 and ABCG1 transcription and caused enhanced cholesterol efflux to high density lipoproteins and apolipoprotein AI. In summary, these data show that t9,t11-CLA is an agonist of LXRalpha in human macrophages and that its effects on macrophage lipid metabolism can be attributed to transcriptional regulations associated with this nuclear receptor.

摘要

共轭亚油酸(CLA)异构体是一类膳食脂肪酸,可调节多种细胞类型中的基因表达。我们之前报道过,特定的反式-9,反式-11(t9,t11)-CLA可诱导参与人类巨噬细胞脂质代谢的基因表达。为了阐明这种转录激活背后的分子机制,我们探究了t9,t11-CLA是否影响肝脏X受体(LXR)α的活性,LXRα是巨噬细胞脂质代谢的主要调节因子。在此我们表明,t9,t11-CLA是LXRα的调节剂。我们进一步证明,CLA异构体可在人类原代巨噬细胞中诱导LXRα直接靶基因的表达。在THP-1细胞中用RNA干扰敲低LXRα可抑制t9,t11-CLA介导的LXRα及其靶基因的激活。为了评估t9,t11-CLA的有效浓度范围,用不同剂量的CLA以及知名的天然和合成LXR激动剂处理人类原代巨噬细胞,并分析ABCA1和ABCG1的mRNA表达。用10微摩尔t9,t11-CLA孵育人类巨噬细胞可导致ABCA1和ABCG1转录的显著调节,并使胆固醇向高密度脂蛋白和载脂蛋白AI的流出增加。总之,这些数据表明,t9,t11-CLA是人类巨噬细胞中LXRα的激动剂,其对巨噬细胞脂质代谢的影响可归因于与该核受体相关的转录调控。

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