Bile salt sequestration induces hepaticde novolipogenesis through farnesoid X receptor- and liver X receptorα-controlled metabolic pathways in mice

法尼甾体X受体 内科学 内分泌学 肝X受体 脂肪生成 化学 甘油三酯 重吸收 胆固醇7α羟化酶 脂质代谢 胆固醇 核受体 生物 生物化学 医学 转录因子 基因
作者
Hilde Herrema,Maxi Meissner,Theo H. van Dijk,Gemma Brufau,Renze Boverhof,Maaike H. Oosterveer,Dirk‐Jan Reijngoud,Michael Müller,Frans Stellaard,Albert K. Groen,Folkert Kuipers
出处
期刊:Hepatology [Lippincott Williams & Wilkins]
卷期号:51 (3): 806-816 被引量:95
标识
DOI:10.1002/hep.23408
摘要

Diabetes is characterized by high blood glucose levels and dyslipidemia. Bile salt sequestration has been found to improve both plasma glycemic control and cholesterol profiles in diabetic patients. Yet bile salt sequestration is also known to affect triglyceride (TG) metabolism, possibly through signaling pathways involving farnesoid X receptor (FXR) and liver X receptor α (LXRα). We quantitatively assessed kinetic parameters of bile salt metabolism in lean C57Bl/6J and in obese, diabetic db/db mice upon bile salt sequestration using colesevelam HCl (2% wt/wt in diet) and related these to quantitative changes in hepatic lipid metabolism. As expected, bile salt sequestration reduced intestinal bile salt reabsorption. Importantly, bile salt pool size and biliary bile salt secretion remained unchanged upon sequestrant treatment due to compensation by de novo bile salt synthesis in both models. Nevertheless, lean and db/db mice showed increased, mainly periportally confined, hepatic TG contents, increased expression of lipogenic genes, and increased fractional contributions of newly synthesized fatty acids. Lipogenic gene expression was not induced in sequestrant-treated Fxr −/− and Lxr α−/− mice compared with wild-type littermates, in line with reports indicating a regulatory role of FXR and LXRα in bile salt–mediated regulation of hepatic lipid metabolism. Conclusion: Bile salt sequestration by colesevelam induces the lipogenic pathway in an FXR- and LXRα-dependent manner without affecting the total pool size of bile salts in mice. We speculate that a shift from intestinal reabsorption to de novo synthesis as source of bile salts upon bile salt sequestration affects zonation of metabolic processes within the liver acinus. (Hepatology 2010.)
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