5 research outputs found

    Transcriptional Regulation of the Human Hepatic Lipase Gene: Relation to Glucose and Lipid Metabolism

    Get PDF
    Hepatic Lipase (HL; EC 3.1.1.3) is an extracellular glycoprotein with phospholipase A1 and triacylglycerol hydrolase activity. The human HL protein is encoded by the LIPC gene on chromosome 15q21. Most of this protein is synthesized in the parenchymal cells of the liver and secreted into the space of Disse where it binds to heparin sulfate proteoglycans. Some synthesis of HL was also observed in macrophages. The HL protein is also present in the steroidogenic adrenal glands, ovaries and, in small amounts, in the testes. By using heparin, HL protein is displaced from its binding site. Human HL protein is a homodimer, the monomer has a molecular weight of 65 kDa. In the metabolism of plasma lipoproteins HL plays an important role; it mediates the conversion of high density lipoprotein subfraction 2 (HDL2) to high density lipoprotein subfraction 3 (HDL3), the conversion of intermediate density lipoprotein (IDL) to low density l

    Activation of Hepatic Lipase Expression by Oleic Acid: Possible Involvement of USF1

    Get PDF
    Polyunsaturated fatty acids affect gene expression mainly through peroxisome proliferator-activated receptors (PPARs) and sterol regulatory element binding proteins (SREBPs), but how monounsaturated fatty acids affect gene expression is poorly understood. In HepG2 cells, oleate supplementation has been shown to increase secretion of hepatic lipase (HL). We hypothesized that oleate affects HL gene expression at the transcriptional level. To test this, we studied the effect of oleate on HL promoter activity using HepG2 cells and the proximal HL promoter region (700 bp). Oleate increased HL expression and promoter activity 1.3–2.1 fold and reduced SREBP activity by 50%. Downregulation of SREBP activity by incubation with cholesterol+25-hydroxycholesterol had no effect on HL promoter activity. Overexpression of SREBP2, but not SREBP1, reduced HL promoter activity, which was effected mainly through the USF1 binding site at -307/-312. Oleate increased the nuclear abundance of USF1 protein 2.7 ± 0.6 fold, while USF1 levels were reduced by SREBP2 overexpression. We conclude that oleate increases HL gene expression via USF1. USF1 may be an additional fatty acid sensor in liver cells

    Activation of Hepatic Lipase Expression by Oleic Acid: Possible Involvement of USF1

    No full text
    Polyunsaturated fatty acids affect gene expression mainly through peroxisome proliferator-activated receptors (PPARs) and sterol regulatory element binding proteins (SREBPs), but how monounsaturated fatty acids affect gene expression is poorly understood. In HepG2 cells, oleate supplementation has been shown to increase secretion of hepatic lipase (HL). We hypothesized that oleate affects HL gene expression at the transcriptional level. To test this, we studied the effect of oleate on HL promoter activity using HepG2 cells and the proximal HL promoter region (700 bp). Oleate increased HL expression and promoter activity 1.3–2.1 fold and reduced SREBP activity by 50%. Downregulation of SREBP activity by incubation with cholesterol+25-hydroxycholesterol had no effect on HL promoter activity. Overexpression of SREBP2, but not SREBP1, reduced HL promoter activity, which was effected mainly through the USF1 binding site at -307/-312. Oleate increased the nuclear abundance of USF1 protein 2.7 ± 0.6 fold, while USF1 levels were reduced by SREBP2 overexpression. We conclude that oleate increases HL gene expression via USF1. USF1 may be an additional fatty acid sensor in liver cells
    corecore