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Regulation of mdr2 P-glycoprotein expression by bile salts
C M Frijters1, R Ottenhoff, M J van Wijland
1Department of Gastrointestinal and Liver Diseases, Academic Medical Center, Amsterdam, The Netherlands.
Abstract:
The phosphatidyl translocating activity of the mdr2 P-glycoprotein (Pgp) in the canalicular membrane of the mouse hepatocyte is a rate-controlling step in the biliary secretion of phospholipid. Since bile salts also regulate the secretion of biliary lipids, we investigated the influence of the type of bile salt in the circulation on mdr2 Pgp expression and activity. Male mice were led a purified diet to which either 0.1% (w/w) cholate or 0.5% (w/w) ursodeoxycholate was added. This led to a near-complete replacement of the endogenous bile salt pool (mainly tauromuricholate) by taurocholate or tauroursodeoxycholate respectively. The phospholipid secretion capacity was then determined by infusion of increasing amounts of tauroursodeoxycholate. Cholate feeding resulted in a 55% increase in maximal phospholipid secretion compared with that in mice on the control diet. Northern blotting revealed that cholate feeding increased mdr2 Pgp mRNA levels by 42%. Feeding with ursodeoxycholate did not influence the maximum rate of phospholipid output or the mdr2 mRNA content. Female mice had a higher basal mdr2 Pgp mRNA level than male mice, and this was also correlated with a higher phospholipid secretion capacity. This could be explained by the 4-fold higher basal cholate content in the bile of female compared with male mice. Our results suggest that the type of bile salts in the circulation influences the expression of the mdr2 gene.
Insights
Dietary bile salt composition influences phospholipid secretion. Cholate feeding significantly increased mdr2 P-glycoprotein (Pgp) expression and maximal phospholipid secretion in mice.
Area of Science:
- Hepatology
- Molecular Biology
- Lipid Metabolism
Background:
- Mdr2 P-glycoprotein (Pgp) activity is crucial for biliary phospholipid secretion.
- Bile salts are known regulators of biliary lipid secretion.
Purpose of the Study:
- To investigate how circulating bile salt types affect mdr2 Pgp expression and activity.
- To understand the role of bile salt composition in regulating phospholipid secretion.
Main Methods:
- Mice were fed diets supplemented with cholate or ursodeoxycholate to alter bile salt pools.
- Phospholipid secretion capacity was measured via infusion.
- Mdr2 Pgp mRNA levels were quantified using Northern blotting.
Main Results:
- Cholate feeding increased maximal phospholipid secretion by 55% and mdr2 Pgp mRNA by 42%.
- Ursodeoxycholate feeding did not alter phospholipid secretion or mdr2 mRNA levels.
- Female mice exhibited higher basal mdr2 Pgp mRNA and phospholipid secretion, linked to higher endogenous cholate levels.
Conclusions:
- The type of bile salt in circulation influences mdr2 gene expression.
- Dietary modulation of bile salt composition can impact biliary phospholipid secretion via mdr2 Pgp regulation.