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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

J Lipid Res · · 7

Vassiliou G, McPherson R

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.

Read the paper (DOI)PubMed

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.

mechanismsobesity

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