MechanismsLandmark
Within three days, an atherogenic diet raises rabbit liver CETP mRNA 2.8-fold and plasma CETP mass 3.2-fold, while other liver mRNAs stay unchanged (J Clin Invest 1990)
Original title: Atherogenic diet increases cholesteryl ester transfer protein messenger RNA levels in rabbit liver
Cholesteryl ester transfer activity rises in plasma of cholesterol-fed rabbits, and the authors investigated the mechanism by measuring cholesteryl ester transfer protein (CETP) mass by radioimmunoassay and CETP mRNA by Northern and slot blot analysis in control (n=8) and cholesterol-fed (n=10) rabbits. Thirty days of cholesterol feeding (chow plus 0.5% cholesterol, 10% corn oil) increased plasma CETP mass 3.2-fold (12.45 +/- 0.82 vs 3.86 +/- 0.38 micrograms/ml), and liver CETP mRNA rose 2.8-fold, while actin, apoE, lecithin-cholesterol acyltransferase and albumin mRNA were unchanged. Unlike the widespread human tissue distribution, CETP mRNA was undetectable in extrahepatic tissue of either group. A sensitive RNase protection assay detected the liver CETP mRNA increase within 3 days of starting the diet, an early, gene-specific response to dietary cholesterol.
Original abstract
Cholesteryl ester transfer activity is increased in plasma of cholesterol-fed rabbits. To investigate the mechanisms leading to changes in activity, we measured cholesteryl ester transfer protein (CETP) mass by RIA and CETP mRNA abundance by Northern and slot blot analysis using a human CETP cDNA probe in control (n = 8) and cholesterol-fed rabbits (n = 10). Cholesterol feeding (chow plus 0.5% cholesterol, 10% corn oil) for 30 d increased CETP mass in plasma 3.2-fold in the cholesterol-fed rabbits (12.45 +/- 0.82 micrograms/ml) compared with controls (3.86 +/- 0.38 micrograms/ml). In the hypercholesterolemic rabbit, liver CETP mRNA levels were increased 2.8 times control mRNA levels. Actin, apo E, lecithin-cholesterol acyltransferase, and albumin mRNA abundances were unchanged. In contrast to the widespread tissue distribution in humans, CETP mRNA was not detected in extrahepatic tissues of either control or cholesterol-fed animals. Using a sensitive RNase protection assay, the increase in liver CETP mRNA was detectable within 3 d of beginning the high cholesterol diet. Thus, in response to the atherogenic diet there is an early increase in liver CETP mRNA, probably causing increased CETP synthesis and secretion, and increased plasma CETP. The results indicate that the CETP gene may be regulated by diet-induced changes in lipid metabolism.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.