Journal of Lipid Research
Volume 51, Issue 8, August 2010, Pages 2234-2244
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Research Articles
Bile acids regulate hepatic gluconeogenic genes and farnesoid X receptor via Gαi-protein-coupled receptors and the AKT pathway[S]

https://doi.org/10.1194/jlr.M004929Get rights and content
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Bile acids are important regulatory molecules that can activate specific nuclear receptors and cell signaling pathways in the liver and gastrointestinal tract. In the current study, the chronic bile fistula (CBF) rat model and primary rat hepatocytes (PRH) were used to study the regulation of gluconeogenic genes phosphoenolpyruvate carboxykinase (PEPCK) and glucose-6-phosphatase (G-6-Pase) and the gene encoding short heterodimeric partner (SHP) by taurocholate (TCA). The intestinal infusion of TCA into the CBF rat rapidly (1 h) activated the AKT (∼9-fold) and ERK1/2 (3- to 5-fold) signaling pathways, downregulated (∼50%, 30 min) the mRNA levels of PEPCK and G-6-Pase, and induced (14-fold in 3 h) SHP mRNA. TCA rapidly (∼50%, 1–2 h) downregulated PEPCK and G-6-Pase mRNA levels in PRH. The downregulation of these genes by TCA was blocked by pretreatment of PRH with pertussis toxin (PTX). In PRH, TCA plus insulin showed a significantly stronger inhibition of glucose secretion/synthesis from lactate and pyruvate than either alone. The induction of SHP mRNA in PRH was strongly blocked by inhibition of PI3 kinase or PKCζ by specific chemical inhibitors or knockdown of PKCζ by siRNA encoded by a recombinant lentivirus. Activation of the insulin signaling pathway appears to be linked to the upregulation of farnesoid X receptor functional activity and SHP induction.

protein kinase C zeta
GW4064
chronic bile fistula rat
primary rat hepatocyte
serine/threonine kinase AKT (protein kinase B)

Cited by (0)

National Institutes of HealthDK-057543DK-078233

    Abbreviations:

    CBF

    chronic bile fistula

    CYP8B1

    12α-hydroxylase

    CYP7A1

    cholesterol 7α-hydroxylase

    HNF4α

    hepatocyte nuclear factor 4α

    FXR

    farnesoid X receptor

    G-6-Pase

    glucose-6-phosphatase

    GPCR

    G-protein-coupled receptor

    GS

    glycogen synthase

    PEPCK

    phosphoenolpyruvate carboxykinase

    PRH

    primary rat hepatocyte

    PTX

    pertussis toxin

    SHP

    short heterodimeric partner

    TCA

    taurocholate

[S]

The online version of this article (available at http://www.jlr.org) contains supplementary data in the form of two figures.