NTCP deficiency in mice protects against obesity and hepatosteatosis

Bile acids play a major role in the regulation of lipid and energy metabolism. Here we propose the hepatic bile acid uptake transporter Na+ taurocholate co-transporting polypeptide (NTCP) as a target to prolong postprandial bile acid elevations in plasma. Reducing hepatic clearance of bile acids fro...

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Veröffentlicht in:JCI insight 2019-07, Vol.5 (14)
Hauptverfasser: Donkers, Joanne M, Kooijman, Sander, Slijepcevic, Davor, Kunst, Roni F, Roscam Abbing, Reinout Lp, Haazen, Lizette Cjm, de Waart, Dirk R, Levels, Johannes Hm, Schoonjans, Kristina, Rensen, Patrick Cn, Oude Elferink, Ronald Pj, Van de Graaf, Stan Fj
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Sprache:eng
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Zusammenfassung:Bile acids play a major role in the regulation of lipid and energy metabolism. Here we propose the hepatic bile acid uptake transporter Na+ taurocholate co-transporting polypeptide (NTCP) as a target to prolong postprandial bile acid elevations in plasma. Reducing hepatic clearance of bile acids from plasma by genetic deletion of NTCP moderately increased plasma bile acid levels, reduced diet-induced obesity, attenuated hepatic steatosis, and lowered plasma cholesterol levels. NTCP-G protein-coupled bile acid receptor (TGR5) double knockout mice were equally protected against diet-induced-obesity as NTCP single knockout mice. NTCP knockout mice displayed decreased intestinal fat absorption and a trend towards higher fecal energy output. Furthermore, NTCP deficiency was associated with an increased uncoupled respiration in brown adipose tissue, leading to increased energy expenditure. We conclude that targeting NTCP-mediated bile acid uptake can be a novel approach to treat obesity and obesity-related hepatosteatosis by simultaneously dampening intestinal fat absorption and increasing energy expenditure.
ISSN:2379-3708
2379-3708
DOI:10.1172/jci.insight.127197