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PMID: 12070142 Published · ppublish English Journal Article

Fasting and postprandial overproduction of intestinally derived lipoproteins in an animal model of insulin resistance. Evidence that chronic fructose feeding in the hamster is accompanied by enhanced intestinal de novo lipogenesis and ApoB48-containing lipoprotein overproduction.

The Journal of biological chemistry ·Vol. 277 ·No. 35 ·2002-08-30 ·Pages 31646-55

Haidari M, Leung N, Mahbub F, Uffelman KD, Kohen-Avramoglu R, Lewis GF, Adeli K

Abstract

Insulin-resistant states are characterized by hypertriglyceridemia, predominantly because of overproduction of hepatic very low density lipoprotein particles. The additional contribution of intestinal lipoprotein overproduction to the dyslipidemia of insulin-resistant states has not been previously appreciated. Here, we have investigated intestinal lipoprotein production in a fructose-fed hamster model of insulin resistance previously documented to have whole body and hepatic insulin resistance, and hepatic very low density lipoprotein overproduction. Chronic fructose feeding for 3 weeks induced significant oversecretion of apolipoprotein B48 (apoB48)-containing lipoproteins in the fasting state and during steady state fat feeding, based on (a) in vivo Triton WR1339 studies of apoB48 production as well as (b) ex vivo pulse-chase labeling of intestinal enterocytes from fasted and fed hamsters. ApoB48 particle overproduction was accompanied by increased intracellular apoB48 stability, enhanced lipid synthesis, higher abundance of microsomal triglyceride transfer protein mass, and a significant shift toward the secretion of larger chylomicron-like particles. ApoB48 particle overproduction was not observed with short-term fructose feeding or in vitro incubation of enterocytes with fructose. Secretion of intestinal apoB48 and triglyceride was closely linked to intestinal enterocyte de novo lipogenesis, which was up-regulated in fructose-fed hamsters. Inhibition of fatty acid synthesis by cerulenin, a fatty acid synthase inhibitor, resulted in a dose-dependent decrease in intestinal apoB48 secretion. Overall, these findings further suggest that intestinal overproduction of apoB48 lipoproteins should also be considered as a major contributor to the fasting and postprandial dyslipidemia observed in response to chronic fructose feeding and development of an insulin-resistant state.

MeSH Terms
Acetates/metabolism Animals Apolipoprotein B-48 Apolipoproteins B/biosynthesis Cells, Cultured Cricetinae Epithelial Cells/cytology,physiology Fasting/physiology Fructose/pharmacology Hepatocytes/metabolism Insulin Resistance/physiology Intestinal Mucosa/metabolism Intestine, Small Kinetics Lipoproteins/biosynthesis Male Mesocricetus Models, Animal Polyethylene Glycols/pharmacology Postprandial Period/physiology Surface-Active Agents/pharmacology Time Factors Triglycerides/biosynthesis Tritium
Chemicals
Acetates Apolipoprotein B-48 Apolipoproteins B Lipoproteins Surface-Active Agents Triglycerides Tritium Fructose Polyethylene Glycols tyloxapol
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Haidari Mehran
Department of Laboratory Medicine and Pathobiology, Hospital for Sick Children, University of Toronto, Toronto, Ontario M5G 1X8, Canada.
Leung Nathalie
Mahbub Farhana
Uffelman Kristine D
Kohen-Avramoglu Rita
Lewis Gary F
Adeli Khosrow
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-08-30
Epub
2002-00-17
Pages
31646-55
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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