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HDL biology

ApoAII enrichment of HDL3 acts as an uncompetitive inhibitor of CETP-mediated cholesteryl ester transfer (J Biol Chem 1994)

Original title: Influence of apolipoprotein composition of high density lipoprotein particles on cholesteryl ester transfer protein activity. Particles containing various proportions of apolipoproteins AI and AII

J Biol Chem · · 6

Lagrost L, Perségol L, Lallemant C, Gambert P

Ultracentrifugally isolated HDL3 containing only apoAI and apoAII was progressively enriched with apoAII by incubation with increasing amounts of delipidated HDL apolipoproteins, without markedly altering particle lipid composition. In the presence of purified human CETP, rates of radiolabeled cholesteryl ester exchange between LDL and HDL3 were significantly reduced in apoAII-enriched particles compared with non-enriched particles, consistently in both transfer directions. The same effect held for plasma-derived HDL3-AI versus HDL3-AIAII particles isolated by ultracentrifugation and anti-apoAII immunoaffinity chromatography, with lower transfer rates in the apoAII-containing particles. Kinetic analysis showed apoAII acts as an uncompetitive inhibitor of the CETP-mediated cholesteryl ester transfer reaction, suggesting that physiological fluctuations in plasma HDL-AI, HDL-AIAII, and HDL-AII levels are an important modulator of cholesteryl ester transfer rates in vivo.

PubMed

Original abstract

The effect of apolipoprotein (apo) composition of high density lipoproteins (HDL) on cholesteryl ester transfer protein (CETP) activity was studied by measuring the rate of radiolabeled cholesteryl esters transferred between low density lipoproteins (LDL) and HDL3 which contained various proportions of apoAI and apoAII. Ultracentrifugally isolated HDL3, which contained virtually only apoAI and apoAII in their protein moiety, were progressively enriched with apoAII upon the incubation with increasing amounts of delipidated HDL apolipoproteins. The substitution of apoAII for apoAI in HDL3 did not induce marked alteration of the lipid composition of the lipoprotein particles. The rates of cholesteryl ester exchanges with LDL in the presence of purified human CETP were significantly reduced with apoAII-enriched HDL3 as compared with non-enriched homologous particles. Consistent results were obtained by determining the rate of cholesteryl esters transferred either from LDL toward HDL3, or in the opposite direction, from HDL3 to LDL. The effect of the apoAI and apoAII content of HDL particles on CETP activity was also investigated by measuring the rate of cholesteryl esters transferred from LDL to plasma HDL3 particles which contained either only apoAI, HDL3-AI, or both apoAI and apoAII, HDL3-AIAII. HDL3-AI and HDL3-AIAII particles were isolated from human plasma by a sequential procedure which combined ultracentrifugation and anti-apoAII immunoaffinity chromatography. As observed with HDL3 artificially enriched with apoAII, cholesteryl ester transfer rates were significantly lower with plasma HDL3-AIAII than with plasma HDL3-AI particles. Kinetic analysis of the interaction of CETP with apoAII-enriched HDL3 revealed that apoAII could act as an uncompetitive inhibitor of the cholesteryl ester transfer reaction. Since the plasma levels of HDL-AI, HDL-AIAII, and HDL-AII may undergo significant physiological fluctuation, the present study suggests that HDL apoproteins may be important factors in modulating cholesteryl ester transfer rates in vivo.

HDL biologymechanisms

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.