Mice deleted for fatty acid transport protein 5 have defective bile acid conjugation and are protected from obesity

被引:108
作者
Hubbard, B
Doege, H
Punreddy, S
Wu, H
Huang, XM
Kaushik, VK
Mozell, RL
Byrnes, JJ
Stricker-Krongrad, A
Chou, CJ
Tartaglia, LA
Lodish, HF
Stahl, A
Gimeno, RE
机构
[1] Millennium Pharmaceut Inc, Cambridge, MA USA
[2] Palo Alto Med Fdn, Res Inst, Palo Alto, CA 94301 USA
[3] Whitehead Inst Biomed Res, Cambridge, MA 02142 USA
关键词
D O I
10.1053/j.gastro.2006.02.012
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Background & Aims: Fatty Acid Transport Protein 5 (FATP5) is a liver-specific member of the FATP/Slc27 family, which has been shown to exhibit both fatty acid transport and bile acid-CoA ligase activity in vitro, Here, we investigate its role in bile acid metabolism and body weight homeostasis in vivo by using a novel FATP5 knockout mouse model. Methods: Bile acid composition was analyzed by mass spectroscopy. Body weight, food intake, energy expenditure, and fat absorption were determined in animals fed either a low- or a high-fat diet. Results: Although total bile acid concentrations were unchanged in bile, liver, urine, and feces of FATP5 knockout mice, the majority of gallbladder bile acids was unconjugated, and only a small percentage was conjugated. Primary, but not secondary, bile acids were detected among the remaining conjugated forms in FATP5 deletion mice, suggesting a specific requirement for FATP5 in reconjugation of bile acids during the enterohepatic recirculation. Fat absorption in FATP5 deletion mice was largely normal, and only a small increase in fecal fat was observed on a high-fat diet. Despite normal fat absorption, FATP5 deletion mice failed to gain weight on a high-fat diet because of both decreased food intake and increased energy expenditure. Conclusions: Our findings reveal an important role for FATP5 in bile acid conjugation in vivo and an unexpected function in body weight homeostasis, which will require further analysis. FATP5 deletion mice provide a new model to study the intersection of bile acid metabolism, lipid metabolism, and body weight regulation.
引用
收藏
页码:1259 / 1269
页数:11
相关论文
共 32 条
[1]   A novel relative of the very-long-chain Acyl-CoA synthetase and fatty acid transporter protein genes with a distinct expression pattern [J].
Berger, J ;
Truppe, C ;
Neumann, H ;
Forss-Petter, S .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1998, 247 (02) :255-260
[2]  
Bove KE, 2004, PEDIATR DEVEL PATHOL, V7, P315, DOI 10.1007/s10024-002-1201-8
[3]   Complex inheritance of familial hypercholanemia with associated mutations in TJP2 and BAAT [J].
Carlton, VEH ;
Harris, BZ ;
Puffenberger, EG ;
Batta, AK ;
Knisely, AS ;
Robinson, DL ;
Strauss, KA ;
Schneider, BL ;
Lim, WA ;
Salen, G ;
Morton, DH ;
Bull, LN .
NATURE GENETICS, 2003, 34 (01) :91-96
[4]   Regulation of bile acid synthesis: pathways, nuclear receptors, and mechanisms [J].
Chiang, JYL .
JOURNAL OF HEPATOLOGY, 2004, 40 (03) :539-551
[5]   Targeted deletion of FATP5 reveals multiple functions in liver metabolism: Alterations in hepatic lipid Homeostasis [J].
Doege, H ;
Baillie, RA ;
Ortegon, AM ;
Tsang, B ;
Wu, QW ;
Punreddy, S ;
Hirsch, D ;
Watson, N ;
Gimeno, RE ;
Stahl, A .
GASTROENTEROLOGY, 2006, 130 (04) :1245-1258
[6]   Molecular cloning and expression of rat liver bile acid CoA ligase [J].
Falany, CN ;
Xie, XW ;
Wheeler, JB ;
Wang, J ;
Smith, M ;
He, DN ;
Barnes, S .
JOURNAL OF LIPID RESEARCH, 2002, 43 (12) :2062-2071
[7]   The sister of P-glycoprotein represents the canalicular bile salt export pump of mammalian liver [J].
Gerloff, T ;
Stieger, B ;
Hagenbuch, B ;
Madon, J ;
Landmann, L ;
Roth, J ;
Hofmann, AF ;
Meier, PJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (16) :10046-10050
[8]   A regulatory cascade of the nuclear receptors FXR, SHP-1, and LRH-1 represses bile acid biosynthesis [J].
Goodwin, B ;
Jones, SA ;
Price, RR ;
Watson, MA ;
McKee, DD ;
Moore, LB ;
Galardi, C ;
Wilson, JG ;
Lewis, MC ;
Roth, ME ;
Maloney, PR ;
Willson, TM ;
Kliewer, SA .
MOLECULAR CELL, 2000, 6 (03) :517-526
[9]   Hepatocyte nuclear factor 4α (nuclear receptor 2A1) is essential for maintenance of hepatic gene expression and lipid homeostasis [J].
Hayhurst, GP ;
Lee, YH ;
Lambert, G ;
Ward, JM ;
Gonzalez, FJ .
MOLECULAR AND CELLULAR BIOLOGY, 2001, 21 (04) :1393-1403
[10]   Free fatty acids regulate gut incretin glucagon-like peptide-1 secretion through GPR120 [J].
Hirasawa, A ;
Tsumaya, K ;
Awaji, T ;
Katsuma, S ;
Adachi, T ;
Yamada, M ;
Sugimoto, Y ;
Miyazaki, S ;
Tsujimoto, G .
NATURE MEDICINE, 2005, 11 (01) :90-94