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The original discovery of CETP mutation D442G reveals a dominant-negative multimeric mechanism causing threefold HDL elevation in heterozygotes (J Clin Invest 1993)

Original title: A missense mutation in the cholesteryl ester transfer protein gene with possible dominant effects on plasma high density lipoproteins

J Clin Invest · · 9

Takahashi K, Jiang XC, Sakai N, Yamashita S, Hirano K, Bujo H, Yamazaki H, Kusunoki J, Miura T, Kussie P

Two probands heterozygous for a cholesteryl ester transfer protein (CETP) missense mutation, 442 D:G, had threefold increases in HDL cholesterol despite being heterozygous, along with markedly decreased plasma CETP mass and activity, unlike the mild HDL increases typical of other CETP-deficiency heterozygotes. Cellular expression of the mutant cDNA alone produced secretion of only 30% of wild-type CETP activity, and coexpression of wild-type and mutant cDNAs inhibited the secretion and activity of the wild-type protein. These dominant effects during cellular expression explain the markedly elevated HDL seen in the heterozygous probands and suggest that the active molecular species of CETP is multimeric.

Read the paper (DOI)PubMed

Original abstract

Plasma HDL are a negative risk factor for atherosclerosis. Cholesteryl ester transfer protein (CETP; 476 amino acids) transfers cholesteryl ester from HDL to other lipoproteins. Subjects with homozygous CETP deficiency caused by a gene splicing defect have markedly elevated HDL; however, heterozygotes have only mild increases in HDL. We describe two probands with a CETP missense mutation (442 D:G). Although heterozygous, they have threefold increases in HDL concentration and markedly decreased plasma CETP mass and activity, suggesting that the mutation has dominant effects on CETP and HDL in vivo. Cellular expression of mutant cDNA results in secretion of only 30% of wild type CETP activity. Moreover, coexpression of wild type and mutant cDNAs leads to inhibition of wild type secretion and activity. The dominant effects of the CETP missense mutation during cellular expression probably explains why the probands have markedly increased HDL in the heterozygous state, and suggests that the active molecular species of CETP may be multimeric.

geneticsHDL biology

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