HDL biologyLandmark
The original discovery that hamster CETP uniquely drives one-way lipid flow from VLDL to HDL reveals CETP orthologs are not functionally equivalent across species (J Lipid Res 2014)
Original title: Cholesteryl ester transfer proteins from different species do not have equivalent activities
Examining the lipid transfer properties of cholesteryl ester transfer protein (CETP) orthologs from rabbit, monkey, and hamster, sharing 80-96% amino acid identity with human CETP, triglyceride-to-cholesteryl-ester transfer ratios were 1.40-, 1.44-, and 6.08-fold higher than human CETP, respectively. In transfer assays between VLDL and HDL, net cholesteryl ester transfer into VLDL by human and monkey CETP was offset by equimolar net triglyceride transfer toward HDL, but for hamster CETP this process was not equimolar, instead producing a net flow of triglyceride into HDL. When assayed for transferring lipid to an acceptor particle lacking cholesteryl ester and triglyceride, monkey and hamster CETP were most effective, though all species promoted this one-way neutral lipid movement. CETP orthologs from human, monkey, rabbit, and hamster are therefore not functionally equivalent.
Original abstract
Site-specific changes in the amino acid composition of human cholesteryl ester transfer protein (CETP) modify its preference for triglyceride (TG) versus cholesteryl ester (CE) as substrate. CETP homologs are found in many species but little is known about their activity. Here, we examined the lipid transfer properties of CETP species with 80-96% amino acid identity to human CETP. TG/CE transfer ratios for recombinant rabbit, monkey, and hamster CETPs were 1.40-, 1.44-, and 6.08-fold higher than human CETP, respectively. In transfer assays between VLDL and HDL, net transfers of CE into VLDL by human and monkey CETPs were offset by equimolar net transfers of TG toward HDL. For hamster CETP this process was not equimolar but resulted in a net flow of lipid (TG) into HDL. When assayed for the ability to transfer lipid to an acceptor particle lacking CE and TG, monkey and hamster CETPs were most effective, although all CETP species were able to promote this one-way movement of neutral lipid. We conclude that CETPs from human, monkey, rabbit, and hamster are not functionally equivalent. Most unique was hamster CETP, which strongly prefers TG as a substrate and promotes the net flow of lipid from VLDL to HDL.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.