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A dominant-negative CETP promoter mutation cuts transcriptional activity to 8% of wild type in Japanese hyperalphalipoproteinemia (ATVB 2001)

Original title: Point mutation (-69 G-->A) in the promoter region of cholesteryl ester transfer protein gene in Japanese hyperalphalipoproteinemic subjects

Arterioscler Thromb Vasc Biol · · 5

Nagano M, Yamashita S, Hirano K, Kujiraoka T, Ito M, Sagehashi Y, Hattori H, Nakajima N, Maruyama T, Sakai N, Egashira T, Matsuzawa Y

In Japanese subjects with marked hyperalphalipoproteinemia (HDL cholesterol at least 2.59 mmol/L), a novel G-to-A substitution at position -69 of the CETP promoter was identified, altering the second nucleotide of the PEA3/ETS binding site upstream of the TATA box. Four of 196 unrelated subjects (2.0%) were heterozygous for the mutation, giving an allelic frequency of 0.0102, and carriers had low plasma CETP levels. A reporter gene assay in HepG2 cells showed the mutation reduced transcriptional activity to just 8% of wild type, supporting a dominant-negative mechanism by which this promoter variant lowers CETP expression and produces the hyperalphalipoproteinemia phenotype.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) transfers cholesteryl ester (CE) from HDL to apolipoprotein (apo) B-containing lipoproteins and plays a crucial role in reverse cholesterol transport, which is a major protective system against atherosclerosis. Genetic CETP deficiency is the most common cause of a marked hyperalphalipoproteinemia (HALP) in the Japanese, and various mutations have been identified in the coding region as well as in the exon/intron boundaries in the CETP gene. In the present study, we identified a novel mutation in the promoter region of the CETP gene. This mutation was a G-to-A substitution at the -69 nucleotide of the promoter region (-69 G-->A), corresponding to the second nucleotide of the PEA3/ETS binding site (CGGAA) located upstream of the putative TATA box. Four (2.0%) of 196 unrelated subjects with a marked HALP (HDL cholesterol >/=2.59 mmol/L=100 mg/dL) were revealed to be heterozygous for the -69 G-->A mutation, and the allelic frequency of the mutant was 0.0102 in the subjects with a marked HALP. The subjects with the -69 G-->A mutation had low plasma CETP levels. Reporter gene assay showed that this mutation markedly reduced the transcriptional activities in HepG2 cells (8% of wild type). These results suggested that this mutation would be dominant negative. In conclusion, a novel -69 G-->A mutation in the CETP gene causes the decreased transcriptional activity leading to HALP.

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Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.