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Sp1 and Sp3 transcription factors regulate the human CETP gene promoter through three binding sites, with the Sp1/Sp3 ratio determining their relative activity (J Lipid Res 2003)

Original title: Regulation of human CETP gene expression: role of SP1 and SP3 transcription factors at promoter sites -690, -629, and -37

J Lipid Res · · 7

Le Goff W, Guerin M, Petit L, Chapman MJ, Thillet J

To evaluate the roles of Sp1 and Sp3 transcription factors on human cholesteryl ester transfer protein (CETP) gene promoter activity, a new Sp1/Sp3 site at position -690 and two previously described sites at -37 and -629 were tested by site-directed mutagenesis and luciferase reporter constructs in transient transfection. In HepG2 cells, the new -690 site acted as a repressive element (-22%; P < 0.05), with an additive effect alongside the -629 site producing marked repression (-42%; P < 0.005). In NCTC cells, which display 16-fold lower Sp3 levels, the repressive effect at -690 was enhanced 2-fold (-45%; P < 0.05), while the -629 site had no effect. Cotransfecting Sp1 and/or Sp3 in SL2 insect cells lacking endogenous Sp factors showed Sp1 and Sp3 act as activators at -690 and -37, while Sp3 acts as a repressor at -629.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) is a key factor in plasma reverse cholesterol transport and is implicated in the pathophysiology of atherogenic dyslipidemia. Variations observed in plasma CETP mass and activity in both normolipidemic and dyslipidemic individuals may reflect differences in CETP gene expression. We evaluated the respective roles of the Sp1 and Sp3 transcription factors on the promoter activity of the human CETP gene at a new Sp1/Sp3 site identified at position -690, and at two previously described Sp1/Sp3 sites at positions -37 and -629. In transient transfection in HepG2 cells, site-directed mutagenesis using luciferase reporter constructs containing a promoter fragment from +32 to -745 indicated that the new -690 site acts as a repressive element in reducing CETP promoter activity (-22%; P < 0.05); equally, this site exerts an additive effect with the -629 site, inducing marked repression (-42%; P < 0.005). In contrast, in NCTC cells that display a 16-fold lower level of Sp3, the repressive effect at the -690 site was enhanced 2-fold (-45%; P < 0.05), whereas the -629 site exerted no effect. Cotransfection of Sp1 and/or Sp3 in SL2 insect cells lacking endogenous Sp factors demonstrated that Sp1 and Sp3 act as activators at the -690 and -37 sites, whereas Sp3 acts as a repressor at the -629 site. Taken together, our data demonstrate that Sp1 and Sp3 regulate human CETP promoter activity through three Sp1/Sp3 binding sites in a distinct manner, and that the Sp1/Sp3 ratio is a key factor in determining the relative contribution of these sites to total promoter activity.

HDL biologymechanisms

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