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Bile Duct Ligation in Mice: Induction of Inflammatory Liver Injury and Fibrosis by Obstructive Cholestasis
Published on: February 10, 2015
Resistance of SHP-null mice to bile acid-induced liver damage
Li Wang1, Yunqing Han, Chang-Soo Kim
1Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas 77030, USA.
Abstract:
The orphan nuclear hormone receptor SHP (gene designation NROB2) is an important component of a negative regulatory cascade by which high levels of bile acids repress bile acid biosynthesis. Short term studies in SHP null animals confirm this function and also reveal the existence of additional pathways for bile acid negative feedback regulation. We have used long term dietary treatments to test the role of SHP in response to chronic elevation of bile acids, cholesterol, or both. In contrast to the increased sensitivity predicted from the loss of negative feedback regulation, the SHP null mice were relatively resistant to the hepatotoxicity associated with a diet containing 0.5% cholic acid and the much more severe effects of a diet containing both 0.5% cholic acid and 2% cholesterol. This was associated with decreased hepatic accumulation of cholesterol and triglycerides in the SHP null mice. There were also alterations in the expression of a number of genes involved in cholesterol and bile acid homeostasis, notably cholesterol 12alpha-hydroxylase (CYP8B1), which was strongly reexpressed in the SHP null mice, but not the wild type mice fed either bile acid containing diet. This contrasts with the strong repression of CYP8B1 observed with short term bile acid feeding, as well as the effects of long term feeding on other bile acid biosynthetic enzymes such as cholesterol 7alpha-hydroxylase (CYP7A1). CYP8B1 expression could contribute to the decreased toxicity of the chronic bile acid treatment by increasing the hydrophilicity of the bile acid pool. These results identify an unexpected role for SHP in hepatotoxicity and suggest new approaches to modulating effects of chronically elevated bile acids in cholestasis.
Insights
Mice lacking the small heterodimer partner (SHP) protein showed resistance to liver damage from high bile acids and cholesterol. This unexpected finding suggests SHP plays a key role in diet-induced liver injury.
Area of Science:
- Hepatology
- Molecular Biology
- Endocrinology
Background:
- The small heterodimer partner (SHP) is crucial for bile acid feedback regulation.
- Previous studies indicated SHP's role in short-term bile acid metabolism.
- The function of SHP in chronic bile acid and cholesterol overload remained unclear.
Purpose of the Study:
- To investigate the role of SHP in long-term response to elevated bile acids, cholesterol, or both.
- To determine SHP's involvement in diet-induced hepatotoxicity.
Main Methods:
- Long-term dietary interventions in SHP null and wild-type mice.
- Analysis of liver pathology, hepatic lipid accumulation, and gene expression.
- Focus on genes involved in cholesterol and bile acid homeostasis, including CYP8B1 and CYP7A1.
Main Results:
- SHP null mice exhibited resistance to hepatotoxicity induced by chronic high bile acid and cholesterol diets.
- Hepatic accumulation of cholesterol and triglycerides was reduced in SHP null mice.
- Reexpression of CYP8B1 was observed in SHP null mice, potentially increasing bile acid hydrophilicity and reducing toxicity.
Conclusions:
- SHP plays an unexpected role in mediating diet-induced hepatotoxicity.
- Loss of SHP confers resistance to chronic bile acid and cholesterol overload.
- These findings offer new strategies for managing cholestasis and related liver conditions.

