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Citations to this article

Dietary fat increases high density lipoprotein (HDL) levels both by increasing the transport rates and decreasing the fractional catabolic rates of HDL cholesterol ester and apolipoprotein (Apo) A-I. Presentation of a new animal model and mechanistic studies in human Apo A-I transgenic and control mice.
T Hayek, … , A Walsh, J L Breslow
T Hayek, … , A Walsh, J L Breslow
Published April 1, 1993
Citation Information: J Clin Invest. 1993;91(4):1665-1671. https://doi.org/10.1172/JCI116375.
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Research Article Article has an altmetric score of 52

Dietary fat increases high density lipoprotein (HDL) levels both by increasing the transport rates and decreasing the fractional catabolic rates of HDL cholesterol ester and apolipoprotein (Apo) A-I. Presentation of a new animal model and mechanistic studies in human Apo A-I transgenic and control mice.

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Abstract

In humans, diets high in saturated fat and cholesterol raise HDL-cholesterol (HDL-C) levels. To explore the mechanism, we have devised a mouse model that mimics the human situation. In this model, HuAITg and control mice were studied on low fat (9% cal)-low cholesterol (57 mg/1,000 kcal) (chow) and high fat (41% cal)-high cholesterol (437 mg/1,000 kcal) (milk-fat based) diets. The mice responded to increased dietary fat by increasing both HDL-C and apo A-I levels, with a greater increase in HDL-C levels. This was compatible with an increase in HDL size observed by nondenaturing gradient gel electrophoresis. Turnover studies with doubly labeled HDL showed that dietary fat both increase the transport rate (TR) and decreased the fractional catabolic rate of HDL cholesterol ester (CE) and apo A-I, with the largest effect on HDL CE TR. The latter suggested that dietary fat increases reverse cholesterol transport through the HDL pathway, perhaps as an adaptation to the metabolic load of a high fat diet. The increase in apo A-I TR by dietary fat was confirmed by experiments showing increased apo A-I secretion from primary hepatocytes isolated from animals on the high fat diet. The increased apo A-I production was not associated with any increase in hepatic or intestinal apo A-I mRNA, suggesting that the mechanism of the dietary fat effect was posttranscriptional, involving either increased translatability of the apo A-I mRNA or less intracellular apo A-I degradation. The dietary fat-induced decrease in HDL CE and apo A-I fractional catabolic rate may have been caused by the increase in HDL particle size, as was suggested by our previous studies in humans. In summary, a mouse model has been developed and experiments performed to better understand the paradoxical HDL-raising effect of a high fat diet.

Authors

T Hayek, Y Ito, N Azrolan, R B Verdery, K Aalto-Setälä, A Walsh, J L Breslow

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Effect of a high or a low fat diet on cardiovascular risk factors in male and female runners:
J Leddy, P Horvath, J Rowland, DA Pendergast
Medicine and Science in Sports and Exercise 1997
Structural determinants for the interaction of lipopolysaccharide binding protein with purified high density lipoproteins: role of apolipoprotein A-I
T Massamiri, PS Tobias, LK Curtiss
Journal of lipid research 1997
ApoA-I knockout mice: characterization of HDL metabolism in homozygotes and identification of a post-RNA mechanism of apoA-I up-regulation in heterozygotes
AS Plump, N Azrolan, H Odaka, L Wu, X Jiang, A Tall, S Eisenberg, JL Breslow
Journal of lipid research 1997
Diet modification alters plasma HDL cholesterol concentrations but not the transport of HDL cholesteryl esters to the liver in the hamster
LA Woollett, DM Kearney, DK Spady
Journal of lipid research 1997
Altered properties of high density lipoprotein subfractions in obese subjects
T Sasahara, T Yamashita, D Sviridov, N Fidge, P Nestel
Journal of lipid research 1997
High-Fat, High-Cholesterol Diet Raises Plasma HDL Cholesterol: Studies on the Mechanism of This Effect
G Wolf
Nutrition Reviews 1996
Functional Lecithin:Cholesterol Acyltransferase Deficiency and High Density Lipoprotein Deficiency in Transgenic Mice Overexpressing Human Apolipoprotein A-II
A Marzal-Casacuberta, F Blanco-Vaca, BY Ishida, J Julve-Gil, J Shen, S Calvet-Márquez, F González-Sastre, L Chan
The Journal of biological chemistry 1996
Adenovirus-Mediated Gene Transfer as an In Vivo Probe of Lipoprotein Metabolism
JM Leiden
Circulation 1996
Synthesis and secretion of B-100 and A-I apolipoproteins in response to the changes of intracellular cholesteryl ester content in chick liver
P Tarugi, S Nicolini, G Ballarini, L Marchi, C Duvigneau, P Tartoni, S Calandra
Journal of lipid research 1996
Effects of gender and menopausal status on plasma lipoprotein subspecies and particle sizes
Z Li, JR McNamara, JC Fruchart, G Luc, JM Bard, JM Ordovas, PW Wilson, EJ Schaefer
Journal of lipid research 1996
apo B gene knockout in mice results in embryonic lethality in homozygotes and neural tube defects, male infertility, and reduced HDL cholesterol ester and apo A-I transport rates in heterozygotes
LS Huang, E Voyiaziakis, DF Markenson, KA Sokol, T Hayek, JL Breslow
Journal of Clinical Investigation 1995
Diets enriched in unsaturated fatty acids enhance apolipoprotein A-I catabolism but do not affect either its production or hepatic mRNA abundance in cynomolgus monkeys
ME Brousseau, EJ Schaefer, AF Stucchi, J Osada, DB Vespa, JM Ordovas, RJ Nicolosi
Atherosclerosis 1995
Dietary Fat Elevates Hepatic ApoA-I Production by Increasing the Fraction of Apolipoprotein A-I mRNA in the Translating Pool
N Azrolan, H Odaka, JL Breslow, EA Fisher
The Journal of biological chemistry 1995
Apolipoprotein E Isoform Phenotype and LDL Subclass Response to a Reduced-Fat Diet
DM Dreon, HA Fernstrom, B Miller, RM Krauss
Arteriosclerosis, thrombosis, and vascular biology 1995
Effects of stigmastanyl-phosphocholine (Ro 16-6532) and lovastatin on lipid and lipoprotein levels and lipoprotein metabolism in the hamster on different diets
J Himber, B Missano, M Rudling, U Hennes, HJ Kempen
Journal of lipid research 1995
The questionable wisdom of a low-fat diet and cholesterol reduction
DM Atrens
Social Science & Medicine 1994
Factors associated with low and elevated plasma high density lipoprotein cholesterol and apolipoprotein A-I levels in the Framingham Offspring Study
EJ Schaefer, S Lamon-Fava, JM Ordovas, SD Cohn, MM Schaefer, WP Castelli, PW Wilson
Journal of lipid research 1994
Hypertriglyceridemia and cholesteryl ester transfer protein interact to dramatically alter high density lipoprotein levels, particle sizes, and metabolism. Studies in transgenic mice
T Hayek, N Azrolan, RB Verdery, A Walsh, T Chajek-Shaul, LB Agellon, AR Tall, JL Breslow
Journal of Clinical Investigation 1993
Transgenic mouse models of lipoprotein metabolism and atherosclerosis
JL Breslow
Proceedings of the National Academy of Sciences 1993
Role of liver in the maintenance of cholesterol and low density lipoprotein homeostasis in different animal species, including humans
JM Dietschy, SD Turley, DK Spady
Journal of lipid research 1993

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