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New CETP/-629 promoter variant lowers CETP mass and raises HDL cholesterol via Sp1/Sp3 repression (ATVB 2000)

Original title: New functional promoter polymorphism, CETP/-629, in cholesteryl ester transfer protein (CETP) gene related to CETP mass and high density lipoprotein cholesterol levels: role of Sp1/Sp3 in transcriptional regulation

Arterioscler Thromb Vasc Biol · · 6

Dachet C, Poirier O, Cambien F, Chapman J, Rouis M

A new -629A/C polymorphism in the CETP gene promoter was identified in 536 control subjects from the ECTIM study; the -629A allele carried lower CETP mass (P less than 0. 0001) and higher HDL cholesterol (P less than 0.001) than the C allele. Transfection of HepG2 cells with luciferase constructs showed the A-allele promoter fragment had 25% lower activity (P less than 0.05) than the C fragment. Gel-shift assays showed Sp1 and Sp3 bound specifically to the A probe but not the C probe, and mutating the -629 Sp1 site abolished nuclear protein binding and raised expression by 25% (P less than 0.05) to match the C-fragment level, demonstrating that Sp1/Sp3 binding at this site represses CETP promoter activity.

Read the paper (DOI)PubMed

Original abstract

A new polymorphism located at position -629 (CETP/-629A/C) in the promoter of the cholesteryl ester transfer protein (CETP) gene is described. The -629A allele was associated with lower CETP mass (P<0. 0001) and higher high density lipoprotein cholesterol (P<0.001) than the C allele in a sample of 536 control subjects from the ECTIM study. Transfection studies in HepG2 cells with a luciferase expression vector incorporating a 777-bp fragment of the CETP promoter and containing either A or C at position -629 showed significantly lower luciferase activity with the promoter fragment of the A allele (-25%, P<0.05). By gel-shift assay, DNA-protein interactions were evaluated in nuclear extracts of HepG2 cells with the use of 2 probes (A or C probe) composed of 20 bp of the promoter sequence surrounding the polymorphic site. Two specific complexes of distinct migration rate were identified with the A and the C probe. Competition with an excess of oligonucleotide containing the Sp1 consensus binding site showed that a protein(s) of the Sp transcription factor family was implicated in complex formation with the A probe but not with the C probe. Incubation with specific antibodies indicated that Sp1 and Sp3 bound specifically to the A probe. We introduced mutations in the -629-Sp1 binding site to test its functionality and to define the characteristics of transcription factor binding. We showed, by gel-shift assay, that no nuclear proteins bound to the mutated sequence. Transient transfection of HepG2 cells revealed that the expression of the mutated fragment was significantly increased compared with that of the A promoter fragment (25%, P<0.05). The mutated fragment displayed the same activity as that of the C promoter. These results indicate that Sp1 and/or Sp3 repress CETP promoter activity, whereas nuclear factors binding the C allele are without effect on promoter expression.

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