HDL biology
Combining a CETP transgene with PLTP deficiency additively lowers HDL cholesteryl ester and apoA-I in mice, showing no functional redundancy (J Biol Chem 2000)
Original title: Cholesteryl ester transfer protein and phospholipid transfer protein have nonoverlapping functions in vivo
To test whether CETP can compensate for phospholipid transfer protein (PLTP) deficiency, the CETP transgene was bred into PLTP knockout (PLTP0) mice. In vivo and in vitro assays detected no phospholipid transfer activity in either PLTP0 or CETPTg/PLTP0 mice. On a chow diet, HDL phospholipid, HDL cholesteryl ester, and HDL apolipoprotein A-I were significantly lower in CETPTg/PLTP0 mice than in PLTP0 mice (45 +/- 7 vs. 79 +/- 9 mg/dl; 9 +/- 2 vs. 16 +/- 5 mg/dl; and 51 +/- 6 vs. 100 +/- 9 arbitrary units, respectively), with similar results on a high fat, high cholesterol diet. These findings indicate CETP and PLTP have no functional redundancy in vivo, and that combining the CETP transgene with PLTP deficiency additively lowers HDL levels.
Original abstract
Plasma phospholipid transfer protein (PLTP) and cholesteryl ester transfer protein (CETP) are homologous molecules that mediate neutral lipid and phospholipid exchange between plasma lipoproteins. Biochemical experiments suggest that only CETP can transfer neutral lipids but that there could be overlap in the ability of PLTP and CETP to transfer or exchange phospholipids. Recently developed PLTP gene knock-out (PLTP0) mice have complete deficiency of plasma phospholipid transfer activity and markedly reduced high density lipoprotein (HDL) levels. To see whether CETP can compensate for PLTP deficiency in vivo, we bred the CETP transgene (CETPTg) into the PLTP0 background. Using an in vivo assay to measure the transfer of [(3)H]PC from VLDL into HDL or an in vitro assay that determined [(3)H]PC transfer from vesicles into HDL, we could detect no phospholipid transfer activity in either PLTP0 or CETPTg/PLTP0 mice. On a chow diet, HDL-PL, HDL-CE, and HDL-apolipoprotein AI in CETPTg/PLTP0 mice were significantly lower than in PLTP0 mice (45 +/- 7 versus 79 +/- 9 mg/dl; 9 +/- 2 versus 16 +/- 5 mg/dl; and 51 +/- 6 versus 100 +/- 9, arbitrary units, respectively). Similar results were obtained on a high fat, high cholesterol diet. These results indicate 1) that there is no redundancy in function of PLTP and CETP in vivo and 2) that the combination of the CETP transgene with PLTP deficiency results in an additive lowering of HDL levels, suggesting that the phenotype of a human PLTP deficiency state would include reduced HDL levels.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.