Xu Leyuan, Bai Qianming, Rodriguez-Agudo Daniel, Hylemon Phillip B, Heuman Douglas M, Pandak William M, Ren Shunlin
Department of Medicine, McGuire Veterans Affairs Medical Center, Virginia Commonwealth University, Research 151, 1201 Broad Rock Blvd, Richmond, VA 23249, USA.
Lipids. 2010 Sep;45(9):821-32. doi: 10.1007/s11745-010-3451-y. Epub 2010 Aug 11.
Dysregulation of lipid metabolism is frequently associated with inflammatory conditions. The mechanism of this association is still not clearly defined. Recently, we identified a nuclear oxysterol, 25-hydroxycholesterol-3-sulfate (25HC3S), as an important regulatory molecule involved in lipid metabolism in hepatocytes. The present study shows that 25HC3S and its precursor, 25-hydroxycholesterol (25HC), diametrically regulate lipid metabolism and inflammatory response via LXR/SREBP-1 and IkappaBalpha/NFkappaB signaling in hepatocytes. Addition of 25HC3S to primary rat hepatocytes decreased nuclear LXR and SREBP-1 protein levels, down-regulated their target genes, acetyl CoA carboxylase 1 (ACC1), fatty acid synthase (FAS), and SREBP-2 target gene HMG reductase, key enzymes involved in fatty acid and cholesterol biosynthesis. 25HC3S reduced TNFalpha-induced inflammatory response by increasing cytoplasmic IkappaBalpha levels, decreasing NFkappaB nuclear translocation, and consequently repressing expression of NFkappaB-dependent genes, IL-1beta, TNFalpha, and TRAF1. NFkappaB-dependent promoter reporter gene assay showed that 25HC3S suppressed luciferase activity in the hepatocytes. In contrast, 25HC elicited opposite effects by increasing nuclear LXR and SREBP-1 protein levels, and by increasing ACC1 and FAS mRNA levels. 25HC also decreased cytoplasmic IkappaBalpha levels and further increased TNFalpha-induced NFkappaB activation. The current findings suggest that 25HC and 25HC3S serve as potent regulators in cross-talk of lipid metabolism and inflammatory response in the hepatocytes.
脂质代谢失调常与炎症状态相关。这种关联的机制仍未明确界定。最近,我们鉴定出一种核氧化甾醇,25-羟基胆固醇-3-硫酸盐(25HC3S),作为肝细胞脂质代谢中一个重要的调节分子。本研究表明,25HC3S及其前体25-羟基胆固醇(25HC)通过肝细胞中的LXR/SREBP-1和IkappaBalpha/NFkappaB信号通路,对脂质代谢和炎症反应起截然相反的调节作用。将25HC3S添加到原代大鼠肝细胞中,可降低核LXR和SREBP-1蛋白水平,下调其靶基因,即脂肪酸和胆固醇生物合成中的关键酶乙酰辅酶A羧化酶1(ACC1)、脂肪酸合酶(FAS)以及SREBP-2靶基因HMG还原酶。25HC3S通过提高细胞质IkappaBalpha水平、降低NFkappaB核转位,从而抑制NFkappaB依赖性基因IL-1β、TNFα和TRAF1的表达,进而减轻TNFα诱导的炎症反应。NFkappaB依赖性启动子报告基因检测表明,25HC3S可抑制肝细胞中的荧光素酶活性。相反,25HC通过提高核LXR和SREBP-1蛋白水平以及ACC1和FAS mRNA水平,产生相反的作用。25HC还降低细胞质IkappaBalpha水平,并进一步增强TNFα诱导的NFkappaB激活。目前的研究结果表明,25HC和25HC3S是肝细胞脂质代谢与炎症反应相互作用中的有效调节因子。