Genetics
CETP-deficient humans clear LDL apoB faster, explaining their low LDL despite reduced apoB production (J Clin Invest 1995)
Original title: Increased catabolic rate of low density lipoproteins in humans with cholesteryl ester transfer protein deficiency
To determine the metabolic basis for the low LDL cholesterol and apoB seen in CETP deficiency, in vivo apoB kinetic studies using stable isotope-labeled phenylalanine infusion and multicompartmental modeling were performed in two unrelated homozygous CETP-deficient subjects and controls. The fractional catabolic rate of LDL apoB was significantly increased in CETP-deficient subjects (0.56 and 0.75 per day) compared with controls (mean 0.39 per day). The production rates of apoB in VLDL and intermediate density lipoprotein were decreased by 55% and 81% respectively in CETP deficiency compared with controls. The authors conclude that increased catabolic clearance of LDL apoB is the primary metabolic basis for low plasma LDL apoB in CETP deficiency, suggesting upregulation of the LDL receptor pathway in this condition.
Original abstract
The cholesteryl ester transfer protein (CETP) transfers lipids among lipoprotein particles and plays a central role in lipoprotein metabolism. Humans with genetic deficiency of CETP have both elevated HDL cholesterol and apolipoprotein A-I concentrations as well as decreased LDL cholesterol and apolipoprotein B levels. The present study was undertaken to elucidate the metabolic basis for the decreased LDL cholesterol and apo B levels in CETP deficiency. We conducted a series of in vivo apo B kinetic studies in tow unrelated homozygotes with CETP deficiency and in control subjects. A primed constant infusion of stable isotopically labeled phenylalanine was administered to the two CETP deficient subjects and control subjects and apo B kinetic parameters in VLDL, intermediate density lipoproteins, and LDL were obtained by using a multicompartmental model. The fractional catabolic rates (FCR) of LDL apo B were significantly increased in the CETP-deficient subjects (0.56 and 0.75/d) compared with the controls (mean FCR of 0.39/d). Furthermore, the production rates of apo B in VLDL and intermediate density lipoprotein were decreased by 55% and 81%, respectively, in CETP deficiency compared with the controls. In conclusion, CETP-deficient subjects were demonstrated to have substantially increased catabolic rates of LDL apo B as the primary metabolic basis for the low plasma levels of LDL apo B. This result indicates that the LDL receptor pathway may be up-regulated in CETP deficiency.
geneticsLDL and apoBmechanisms
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.