Bile Acids Enhance Low Density Lipoprotein Receptor Gene Expression via a MAPK Cascade-mediated Stabilization of mRNA*

Abstract

Recent studies have indicated that bile acids regulate the expression of several genes involved in bile acid and lipid metabolism as ligands for the farnesoid X receptor (FXR). We report here that bile acids are directly able to govern cholesterol metabolism by a novel mechanism. We show that chenodeoxycholic acid (CDCA) enhances low density lipoprotein (LDL) receptor gene expression in human cultured cell lines (HeLa, Hep G2, and Caco-2). The proteolytic activation of sterol regulatory element-binding protein-2 (SREBP-2), a major regulator for LDL receptor gene expression, is not affected by CDCA. Both deoxycholic acid and lithocholic acid as well as CDCA, but not ursodeoxycholic acid, increase the mRNA level for the LDL receptor, even when Hep G2 cells are cultured with 25-hydroxycholesterol, a potent suppressor of gene expression for the LDL receptor. Although it seems possible that FXR might be involved in genetic regulation, both reporter assays with a reporter gene containing the LDL receptor promoter as well as Northern blot analysis reveal that FXR is not involved in the process. On the other hand, inhibition of mitogen-activated protein (MAP) kinase activities, which are found to be induced by CDCA, abolishes the CDCA-mediated up-regulation of LDL receptor gene expression. We further demonstrate that CDCA stabilizes LDL receptor mRNA and that the MAP kinase inhibitors accelerate its turnover. Taken together, these results indicate that bile acids increase LDL uptake and the intracellular cholesterol levels through the activation of MAP kinase cascades in conjunction with a down-regulation of bile acid biosynthesis by FXR. This work opens up a new avenue for developing pharmaceutical interventions that lower plasma LDL by stabilizing LDL receptor mRNA.

  • Abbreviations:
    LXRα
    liver X receptor α
    FXR
    farnesoid X receptor
    CDCA
    chenodeoxycholic acid
    SHP
    small heterodimer partner
    LDL
    low density lipoprotein
    SREBP
    sterol regulatory element-binding protein
    MAP
    mitogen-activated protein
    LPDS
    lipoprotein-deficient serum
    DCA
    deoxycholic acid
    LCA
    lithocholic acid
    UDCA
    ursodeoxycholic acid
    PMA
    phorbol 12-myristate 13-acetate
    FBS
    fetal bovine serum
    RXRα
    9-cis-retinoic acid receptor α
    I-BABP
    intestinal bile acid-binding protein
    ERK
    extracellular signal-regulated kinase
    HMG
    hydroxymethylglutaryl
    PI3K
    phosphatidylinositol 3kinase
    MEK
    mitogen-activated protein kinase/extracellular signal-regulated kinase kinase
    UTR
    untranslated region
    ARE
    AU-rich element
    • Received July 8, 2002.
    • Revision received July 30, 2002.
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    This Article

    1. The Journal of Biological Chemistry 277, 37229-37234.
    1. All Versions of this Article:
      1. M206749200v1
      2. 277/40/37229 (most recent)

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