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Novel splice-site mutation in the CETP gene found in a patient with hyperalphalipoproteinemia (Metabolism 2002)

Original title: A novel mutation in the intron 1 splice donor site of the cholesterol ester transfer protein (CETP) gene as a cause of hyperalphalipoproteinemia

Metabolism · · 4

Jap TS, Wu YC, Tso YC, Chiu CY

Sequencing of an 80-year-old subject with severe hyperalphalipoproteinemia identified a previously unreported mutation in the intron 1 splice donor site of the CETP gene. RT-PCR of the patient's cDNA showed both wild-type and mutant transcripts, with the mutant 5'-splice site shifted 4 nucleotides upstream, causing a frame-shift and premature termination at amino acid residue 22 and predicting a markedly truncated CETP protein. The patient carried neither the D442G nor the Int14A allele. Screening 224 random Han Chinese subjects for these two known CETP mutations found a D442G allelic frequency of 4.46% and no Int14A carriers, adding a new loss-of-function variant to the catalogue of CETP mutations underlying high-HDL syndromes in the Taiwanese population.

Read the paper (DOI)PubMed

Original abstract

The exchange of cholesterol ester (CE) between lipoproteins occurs through the action of cholesterol ester transfer protein (CETP). The human CETP gene is composed of 16 exons encompassing 25 kbp on chromosome 16q13. The objective of this study was to determine whether a mutation in the CETP gene accounted for severe hyperalphalipoproteinemia in an 80-year-old subject. As a secondary objective, we also investigated the allelic frequency of D442G and Int14A mutation in 224 random Han Chinese subjects. DNA sequence analysis of the CETP gene in the patient revealed a peculiar nucleotide pattern in intron 1. To determine whether this peculiarity results in abnormally spliced mRNA, we used reverse-transcriptase polymerase chain reaction (RT-PCR) to amplify and sequence the patient's cDNA using CETP-specific primers that spanned this splice junction. Both the wild-type and mutant cDNA were detected, and the mutant cDNA showed that its 5'-splice site shifted 4 nucleotides upstream. This change results in a frame-shift and premature termination at amino acid residue 22, and thus predicts a markedly truncated protein product. Although this patient did not have either the D442G or Int14A allele, we found that the allelic frequency of D442G in 224 subjects was 4.46%. No subjects had the Int14A allele. In conclusion, a novel intron 1 splice site mutation in the CETP gene in 1 patient with hyperalphalipoproteinemia and D442G allelic frequency of 4.46% was found among a normal population in Taiwan.

ancestrygenetics

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