Hyperalphalipoproteinemia in human lecithin cholesterol acyltransferase transgenic rabbits. In vivo apolipoprotein A-I catabolism is delayed in a gene dose-dependent manner.
Open Access
- 15 April 1996
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 97 (8) , 1844-1851
- https://doi.org/10.1172/jci118614
Abstract
Lecithin cholesterol acyltransferase (LCAT) is an enzyme involved in the intravascular metabolism of high density lipoproteins (HDLs). Overexpression of human LCAT (hLCAT) in transgenic rabbits leads to gene dose-dependent increases of total and HDL cholesterol concentrations. To elucidate the mechanisms responsible for this effect, 131I-HDL apoA-I kinetics were assessed in age- and sex-matched groups of rabbits (n=3 each) with high, low, or no hLCAT expression. Mean total and HDL cholesterol concentrations (mg/dl), respectively, were 162+/-18 and 121+/-12 for high expressors (HE), 55+/-6 and 55+/-10 for low expressors (LE), and 29+/-2 and 28+/-4 for controls. Fast protein liquid chromatography analysis of plasma revealed that the HDL of both HE and LE were cholesteryl ester and phospholipid enriched, as compared with controls, with the greatest differences noted between HE and controls. These compositional changes resulted in an incremental shift in apparent HDL particle size which correlated directly with the level of hLCAT expression, such that HE had the largest HDL particles and controls the smallest. In vivo kinetic experiments demonstrated that the fractional catabolic rate(FCR, d(-1)) of apoA-I was slowest in HE (0.328+/-0.03) followed by LE (0.408+/-0.01) and, lastly, by controls (0.528+/-0.04). ApoA-I FCR was inversely associated with HDL cholesterol level (r=-0.851,P<0.01) and hLCAT activity (r=-0.816, P<0.01). These data indicate that fractional catabolic rate is the predominant mechanism by which hLCAT overexpression differentially modulates HDL concentrations in this animal model. We hypothesize that LCAT-induced changes in HDL composition and size ultimately reduce apoA-I catabolism by altering apoA-I conformation and/or HDL particle regeneration.Keywords
This publication has 51 references indexed in Scilit:
- Apolipoprotein A-II Production Rate Is a Major Factor Regulating the Distribution of Apolipoprotein A-I Among HDL Subclasses LpA-I and LpA-I:A-II in Normolipidemic HumansArteriosclerosis, Thrombosis, and Vascular Biology, 1995
- Unique Epitope of Apolipoprotein A-I Expressed in Pre-.beta.-1 High-Density Lipoprotein and Its Role in the Catalyzed Efflux of Cellular CholesterolBiochemistry, 1994
- Lecithin-cholesterol acyltransferase in the metabolism of high-density lipoproteinsBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1991
- Apo A-I metabolism in cynomolgus monkeys: Male-female differencesBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1990
- The rabbit as an animal model of hepatic lipase deficiencyBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1989
- Early incorporation of cell-derived cholesterol into pre-.beta.-migrating high-density lipoproteinBiochemistry, 1988
- Lipoprotein substrates for plasma cholesterol esterificationAtherosclerosis, 1985
- Receptor-Mediated Endocytosis: Concepts Emerging from the LDL Receptor SystemAnnual Review of Cell Biology, 1985
- PARTIAL PURIFICATION AND CHARACTERIZATION OF THE INHERITED H1 1 AND R 67 ANTIGENS OF RABBIT SERUM HIGH DENSITY LIPOPROTEINInternational Journal of Immunogenetics, 1978
- A protein cofactor of lecithin:Cholesterol acyltransferaseBiochemical and Biophysical Research Communications, 1972