LDL and apoB
VLDL-bound lipoprotein lipase boosts CETP-mediated cholesteryl ester transfer partly independent of its lipolytic action (J Lipid Res 1999)
Original title: VLDL-bound lipoprotein lipase facilitates the cholesteryl ester transfer protein-mediated transfer of cholesteryl esters from HDL to VLDL
Three patients with severe lipoprotein lipase (LPL) deficiency showed net mass cholesteryl ester transfer (CET) more than 80% lower than common hypertriglyceridemic subjects; recombination experiments traced this to abnormal VLDL, and replacing it with normal VLDL fully normalized net mass CET. Using VLDL prepared with controlled amounts of bound LPL as cholesteryl ester acceptors in radioisotopic CETP-mediated transfer assays, the stimulating effect of LPL on CETP-dependent transfer was reduced by only about 50% when LPL's lipolytic activity was fully blocked with inhibitors, regardless of inhibitor type or CETP source. The results show that physiological amounts of VLDL-bound LPL facilitate CETP-mediated cholesteryl ester transfer through a mechanism partly independent of its lipolytic activity, in addition to its well-known lipolysis-dependent stimulatory effect.
Original abstract
In recent years, it has been established that lipoprotein lipase (LPL) is partly associated with circulating lipoproteins. This report describes the effects of physiological amounts of very low density lipoprotein (VLDL)-bound LPL on the cholesteryl ester transfer protein (CETP)-mediated cholesteryl ester transfer (CET) from high density lipoprotein (HDL) to VLDL. Three patients with severe LPL deficiency exhibited a strong decrease in net mass CET that was more than 80% lower than that of common hypertriglyceridemic subjects. Recombination experiments showed that this was due to an abnormal behavior of the VLDL fraction. Replacement of the latter by normal VLDL totally normalized net mass CET. We therefore prepared VLDL containing controlled amounts of bound LPL that we used as CE acceptors in experiments involving unidirectional radioisotopic CET measurements. These were carried out either in the absence or in the presence of inhibitors of LPL lipolytic activity. When LPL-induced lipolysis was totally blocked, the stimulating effect of the enzyme on the CETP-dependent CET was only reduced by about 50%, showing that it did not entirely result from its lipolytic action. These data were dependent upon neither the type of LPL inhibitor (E600 or THL) nor the source of CETP (delipidated plasma or partially purified CETP). Thus, in addition to the well-known stimulating effect of LPL-dependent lipolysis on CET, our work demonstrates that physiological amounts of VLDL-bound LPL may facilitate CET through a mechanism partially independent of its lipolytic activity.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.