HDL biology
CETP-mediated cholesteryl ester transfer rises with acyl chain length while selective cellular uptake falls, an inverse relationship across four cell types (J Lipid Res 1991)
Original title: Comparative acyl specificities for transfer and selective uptake of high density lipoprotein cholesteryl esters
This study compared the acyl-chain specificities of CETP-mediated transfer and receptor-independent selective uptake of cholesteryl esters from HDL. Cholesterol was esterified with a series of variable-length saturated acids and variably unsaturated 18-carbon acids, then incorporated into synthetic HDL particles alongside 125I-apoA-I as a particle tracer and 14C-cholesteryl oleate as an internal standard. Selective uptake was studied most extensively in Y1-BS1 mouse adrenal cortical tumor cells, with additional testing in human HepG2 hepatoma cells and fibroblasts from human, rat, and rabbit. Selective uptake decreased with increasing acyl chain length and increased with unsaturation of C18 chains across all cell types, while CETP-mediated transfer showed the opposite pattern, increasing with chain length and decreasing with unsaturation. Human and rabbit CETP specificities differed little.
Original abstract
This study compares the specificities of selective uptake and transfer mediated by plasma cholesteryl ester transfer protein (CETP) for various species of cholesteryl esters in high density lipoproteins (HDL). [3H]Cholesterol was esterified with a series of variable chain length saturated acids and a series of variably unsaturated 18-carbon acids. These were incorporated into synthetic HDL particles along with 125I-labeled apoA-I as a tracer of HDL particles and [14C]cholesteryl oleate as an internal standard for normalization between preparations. Selective uptake by Y1-BS1 mouse adrenal cortical tumor cells was most extensively studied, but uptake by human HepG2 hepatoma cells and fibroblasts of human, rat, and rabbit origin were also examined. Acyl chain specificities for selective uptake and for CETP-mediated transfer were conversely related; selective uptake by all cell types decreased with increasing acyl chain length and increased with the extent of unsaturation of C18 chains. In contrast, CETP-mediated transfer increased with acyl chain length, and decreased with unsaturation of C18 chains. The specificities of human and rabbit CETP were also compared, and were found to differ little. Associated experiments showed that HDL-associated triglycerides, traced by [3H]glyceryl trioleyl ether, were selectively taken up but at a lesser rate than cholesteryl esters. The mechanism of this uptake appears to be the same as for selective uptake of cholesteryl esters.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.