Mechanisms
CETP moves HDL lipids into adipocytes without receptors or endocytosis, overturning the prevailing uptake model (J Lipid Res 2004)
Original title: Role of cholesteryl ester transfer protein in selective uptake of high density lipoprotein cholesteryl esters by adipocytes
Contrary to prior models attributing CETP-mediated selective uptake of HDL cholesteryl ester (CE) to transfer onto apoB lipoproteins for LDL-receptor internalization, or to HDL remodeling for SR-BI-mediated uptake, this study found CETP-mediated selective uptake of HDL3-derived CE in adipocytes was undiminished in LDL-receptor-null cells, SR-BI-null cells, or with receptor-associated protein blockade. Blocking endocytosis with monensin or energy depletion (2-deoxyglucose plus NaN3) had no effect on uptake, and CETP was shown to transfer CE into a compartment from which unlabeled HDL could extract it. CETP also mediated selective uptake of HDL3-derived triglyceride and phospholipid, with triglyceride and CE uptake kinetics both saturating near 5 microg/ml HDL, while phospholipid uptake was about 6-fold greater than CE uptake and did not saturate at that concentration.
Original abstract
Previous reports attributed cholesteryl ester transfer protein (CETP)-mediated HDL cholesteryl ester (CE) selective uptake to the CETP-mediated transfer of CE from HDL to newly secreted apolipoprotein B-containing lipoproteins, which are then internalized by the LDL receptor (LDL-R). CETP has also been implicated in the remodeling of HDL, which renders it a better substrate for selective uptake by scavenger receptor class B type I (SR-BI). However, CETP-mediated selective uptake of HDL3-derived CE was not diminished in LDL-R null adipocytes, SR-BI null adipocytes, or in the presence of the receptor-associated protein. We found that monensin treatment or energy depletion of the SW872 liposarcoma cells with 2-deoxyglucose and NaN3 had no effect on CETP-mediated selective uptake, demonstrating that endocytosis is not required. This is supported by data indicating that CETP transfers CE into a compartment from which it can be extracted by unlabeled HDL. CETP could also mediate the selective uptake of HDL3-derived triacylglycerol (TG) and phospholipid (PL). The CETP-specific kinetics for TG and CE uptake were similar, and both reached saturation at approximately 5 microg/ml HDL. In contrast, CETP-specific PL uptake did not attain saturation at 5 microg/ml HDL and was approximately 6-fold greater than the uptake of CE. We propose two possible mechanisms to account for the role of CETP in selective uptake.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.