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Hepatocyte peroxisome proliferator-activated receptor α regulates bile acid synthesis and transport.

Authors :
Xie, Cen
Takahashi, Shogo
Brocker, Chad N.
He, Shijun
Chen, Li
Xie, Guomin
Jang, Katrina
Gao, Xiaoxia
Krausz, Kristopher W.
Qu, Aijuan
Levi, Moshe
Gonzalez, Frank J.
Source :
BBA - Molecular & Cell Biology of Lipids. Oct2019, Vol. 1864 Issue 10, p1396-1411. 16p.
Publication Year :
2019

Abstract

Peroxisome proliferator-activated receptor alpha (PPARα) controls lipid homeostasis through regulation of lipid transport and catabolism. PPARα activators are clinically used for hyperlipidemia treatment. The role of PPARα in bile acid (BA) homeostasis is beginning to emerge. Herein, Ppara -null and hepatocyte-specific Ppara -null (Ppara ∆Hep) as well as the respective wild-type mice were treated with the potent PPARα agonist Wy-14,643 (Wy) and global metabolomics performed to clarify the role of hepatocyte PPARα in the regulation of BA homeostasis. Levels of all serum BAs were markedly elevated in Wy-treated wild-type mice but not in Ppara -null and Ppara ∆Hep mice. Gene expression analysis showed that PPARα activation (1) down-regulated the expression of sodium-taurocholate acid transporting polypeptide and organic ion transporting polypeptide 1 and 4, responsible for the uptake of BAs into the liver; (2) decreased the expression of bile salt export pump transporting BA from hepatocytes into the bile canaliculus; (3) upregulated the expression of multidrug resistance-associated protein 3 and 4 transporting BA from hepatocytes into the portal vein. Moreover, there was a notable increase in the compositions of serum, hepatic and biliary cholic acid and taurocholic acid following Wy treatment, which correlated with the upregulated expression of the Cyp8b1 gene encoding sterol 12α-hydroxylase. The effects of Wy were identical between the Ppara ∆Hep and Ppara -null mice. Hepatocyte PPARα controlled BA synthesis and transport not only via direct transcriptional regulation but also via crosstalk with hepatic farnesoid X receptor signaling. These findings underscore a key role for hepatocyte PPARα in the control of BA homeostasis. Unlabelled Image • PPARα activation elevates serum bile acids via controlling bile acid transport. • PPARα activation increases 12α-OH/non-12α BAs by directly targeting CYP8B1. • Crosstalk between PPARα and FXR through RXRα competition was suggested. • PPARα activation within hepatocytes influences BA homeostasis. • Fasting-disrupted BA homeostasis is partially mediated by PPARα activation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13881981
Volume :
1864
Issue :
10
Database :
Academic Search Index
Journal :
BBA - Molecular & Cell Biology of Lipids
Publication Type :
Academic Journal
Accession number :
137825962
Full Text :
https://doi.org/10.1016/j.bbalip.2019.05.014