HDL biologyLandmark
CETP incubation shrinks reconstituted HDL from 9.4 to 7.8 nm while raising particle count 50%, the first direct evidence of CETP-driven particle fusion (J Biol Chem 1997)
Original title: Evidence that cholesteryl ester transfer protein-mediated reductions in reconstituted high density lipoprotein size involve particle fusion
CETP is known to change HDL particle size during in vitro incubation, and ternary complex formation (HDL-CETP-HDL) has been proposed as the mechanism. Incubating spherical reconstituted HDL (rHDL) containing three apoA-I molecules per particle, (A-I)rHDL, or six apoA-II molecules per particle, (A-II)rHDL, with CETP reduced their diameters from 9.4 to 7.8 nm and from 9.8 to 8.8 nm. The resulting small particles contained only two apoA-I or four apoA-II molecules each, and since all rHDL lipids and apolipoproteins were recovered, the number of particles increased by 50%. This fits sequential binding of two rHDL to CETP, fusion within the resulting ternary complex, and rearrangement into three smaller particles. Spectroscopic analysis confirmed the small rHDL were structurally distinct from the originals, providing the first evidence that CETP mediates fusion of rHDL.
Original abstract
It is well established that cholesteryl ester transfer protein (CETP) changes the size of high density lipoproteins (HDL) during incubation in vitro. It has been suggested that HDL.CETP.HDL ternary complex formation is involved in these changes. The present results, which are consistent with CETP changing the size of spherical reconstituted HDL (rHDL) by a mechanism involving fusion, support the ternary complex hypothesis. When rHDL containing a core of cholesteryl esters and either three molecules of apolipoprotein (apo) A-I/particle, (A-I)rHDL, or six molecules of apoA-II/particle, (A-II)rHDL, were incubated individually with CETP, their respective diameters decreased from 9.4 to 7.8 nm and from 9.8 to 8.8 nm. The small (A-I)rHDL and (A-II)rHDL contained, respectively, two molecules of apoA-I/particle and four molecules of apoA-II/particle. As all of the rHDL lipids and apolipoproteins were quantitatively recovered at the end of the incubations, it was apparent that there was a 50% increase in the number of particles. This increase in the number of particles can be explained as follows: (i) sequential binding of two rHDL to CETP to generate a ternary complex, (ii) fusion of the rHDL in the ternary complex, and (iii) rearrangement of the fusion product into three small particles. Various spectroscopic techniques were used to show that the small rHDL were structurally distinct from the original rHDL. These results provide the first evidence that CETP mediates the fusion of spherical rHDL.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.