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Genetics

A newly characterized CETP promoter variant raises HDL cholesterol specifically in African Americans by weakening a transcription-factor binding site (Clin Genet 2004)

Original title: Cholesteryl ester transfer protein promoter single-nucleotide polymorphisms in Sp1-binding sites affect transcription and are associated with high-density lipoprotein cholesterol

Clin Genet · · 6

Thompson JF, Lloyd DB, Lira ME, Milos PM

This study investigated genetic variation in Sp1/Sp3 transcription factor binding sites within the proximal CETP promoter, examining the known -629 polymorphism and a previously uncharacterized polymorphism at -38 for association with HDL-cholesterol (HDL-C) in vivo and transcriptional activity in vitro. Both polymorphisms were associated with HDL-C levels and affected transcription. The -629 polymorphism was common across all ethnic groups, but the -38 polymorphism was found at significant levels (6.4%) only in African Americans, where homozygotes for the less common -38A allele had higher HDL-C than -38G carriers; this association was found in an at-risk African American population and replicated in a separate cohort selected for extreme HDL-C. In HepG2 cells, the most transcriptionally active allele combination (-629C/-38G) produced 51% more reporter protein than the least active combination (-629A/-38A), mirroring the in vivo HDL-C phenotypes.

Read the paper (DOI)PubMed

Original abstract

Genetic variation in the human cholesteryl ester transfer protein (CETP) promoter has been shown to be associated with high-density lipoprotein cholesterol (HDL-C) levels and cardiovascular disease. Some of this variation occurs in Sp1/Sp3 binding sites in the proximal promoter. We find that both the known promoter polymorphism at -629 and the previously uncharacterized polymorphism at -38 are associated with HDL-C levels in vivo and affect transcription in vitro. While the -629 polymorphism is common in all ethnic groups, the -38 polymorphism is found at significant levels (6.4%) only among African Americans. Those homozygous for the less common -38A allele have higher HDL-C levels than those with the more frequent -38G allele. This association was found in a population of African Americans at risk of cardiovascular disease and then replicated in a different population chosen from among patients with extremes of HDL-C. When studied in vitro, the most transcriptionally active allele (-629C/-38G) yields 51% more reporter protein than the least active allele (-629A/-38A) in HepG2 cells. These transcriptional effects reflect the projected impact of increased CETP expression on HDL-C phenotypes seen in vivo.

ancestrygeneticsHDL biology

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