cetpinhibition.org

Genetics

A single CETP gene variant, rs5883, is identified as the main driver of the exon-9-skipping splice form (Biochem Biophys Res Commun 2014)

Original title: Genetic variants affecting alternative splicing of human cholesteryl ester transfer protein

Biochem Biophys Res Commun · · 6

Suhy A, Hartmann K, Newman L, Papp A, Toneff T, Hook V, Sadee W

Formation of an alternative CETP splice form lacking exon 9 (delta9-CETP) has been associated with two single nucleotide polymorphisms in high linkage disequilibrium: rs9930761 in intron 8, near a putative splicing branch site, and rs5883 in exon 9, at a possible exonic splicing enhancer site. To assess the relative effect of each variant on splicing, mini-gene constructs spanning CETP exons 8 to 10, carrying all four possible allele combinations, were transfected into HEK293 and HepG2 cells. The minor T allele of rs5883 significantly enhanced splicing in both cell lines, while the minor C allele of rs9930761 did not, and combining both alleles did not increase splicing beyond the rs5883 T allele alone in HepG2 cells. The authors conclude the genetic effect on CETP splicing is largely attributable to rs5883, and confirm that delta9-CETP protein is expressed in the liver but fails to circulate in the blood.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) plays an important role in reverse cholesterol transport, with decreased CETP activity increasing HDL levels. Formation of an alternative splice form lacking exon 9 (Δ9-CETP) has been associated with two single nucleotide polymorphisms (SNPs) in high linkage disequilibrium with each other, namely rs9930761 T>C located in intron 8 in a putative splicing branch site and rs5883 C>T in a possible exonic splicing enhancer (ESE) site in exon 9. To assess the relative effect of rs9930761 and rs5883 on splicing, mini-gene constructs spanning CETP exons 8 to 10, carrying all four possible allele combinations, were transfected into HEK293 and HepG2 cells. The minor T allele of rs5883 enhanced splicing significantly in both cell lines whereas the minor C allele of rs9930761 did not. In combination, the two alleles did not yield greater splicing than the rs5883 T allele alone in HepG2 cells. These results indicate that the genetic effect on CETP splicing is largely attributable to rs5883. We also confirm that Δ9-CETP protein is expressed in the liver but fails to circulate in the blood.

geneticsmechanisms

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