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A new liposome-based assay shows CETP transfer rate depends jointly on donor AND acceptor surface cholesteryl-ester content, with LDLs varying 1.8-fold in CE-presenting capacity (J Lipid Res 2003)

Original title: The surface cholesteryl ester content of donor and acceptor particles regulates CETP: a liposome-based approach to assess the substrate properties of lipoproteins

J Lipid Res · · 8

Morton RE, Greene DJ

Cholesteryl ester transfer protein (CETP) activity is regulated in part by lipoprotein composition, and the authors previously showed CETP activity follows saturation kinetics as donor-particle surface cholesteryl ester (CE) increases. They tested whether the activity plateau occurs because acceptor surface CE becomes rate limiting, using synthetic liposome donors and acceptors whose CE content was varied independently. As donor CE increased, CETP activity followed saturable kinetics, but the slope of the initial linear portion and the maximum CE transfer rate were linearly related to acceptor surface CE concentration. CE-rich donor liposomes transferring to multiple control LDLs showed CETP activity ranging 1.8-fold despite equivalent CETP binding capacity, indicating LDLs vary widely in their capacity to present CE to CETP. CETP activity thus depends on substrate lipid surface availability in both donor and acceptor particles.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) activity is regulated, in part, by lipoprotein composition. We previously demonstrated that CETP activity follows saturation kinetics as cholesteryl ester (CE) levels in the phospholipid surface of donor particles are increased. We propose here that the plateau of CETP activity occurs because the surface concentration of CE in the acceptor becomes rate limiting. This hypothesis was tested in CETP assays between synthetic liposomes whose CE content was varied independently. As donor CE increased, CETP activity followed saturable kinetics, but the slope of the first-order portion of the curve and the maximum achievable CE transfer rate were linearly related to the acceptor's surface CE concentration. These findings, plus studies with free cholesterol-modified LDL, strongly suggest that CE-rich donor liposomes can measure the CETP-accessible CE in acceptor lipoproteins. CETP activity from CE-rich liposomes to multiple control LDLs ranged 1.8-fold despite equivalent CETP binding capacity, suggesting that LDLs vary widely in their capacity to present CE to CETP. Thus, CETP activity depends on the surface availability of substrate lipids in the donor and acceptor. Donor liposomes with high CE content can be used to assess how subtle changes in composition alter the substrate potential of plasma lipoproteins.

mechanisms

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.