Genetics
Two novel CETP protein variants identified through resequencing in individuals of Asian ancestry, both partly functional (Atherosclerosis 2009)
Original title: Frequency and function of CETP variants among individuals of Asian ancestry
This study resequenced all CETP exons and adjacent intronic segments in 96 individuals of Asian ancestry to identify undetected protein-sequence-altering polymorphisms and determine their functionality, since CETP genetic variation is clearly linked to HDL-cholesterol but its cardiovascular disease association has been more controversial, possibly due to variability of polymorphisms across ethnicities. Two novel SNPs were identified, including a coding change (S332 to Y332). Cloned variants were tested in vitro for secretion efficiency by Western blotting and cholesteryl ester transfer activity using a fluorescent substrate assay. Y332, Q296, and G442 were secreted less well than wild-type protein but retained significant transfer activity, while P151 was not secreted and showed no transfer activity. A splicing variant causing a truncated, non-functional CETP protein, previously reported mainly in Asians, was also found in two individuals of European ancestry on the same haplotype background, suggesting a common origin.
Original abstract
Genetic variation in CETP (cholesteryl ester transfer protein) has been clearly associated with HDL cholesterol levels but its association with cardiovascular disease and related phenotypes has been more controversial, possibly due to variability of polymorphisms and their frequencies across different ethnic populations. To see if there are undetected polymorphisms affecting protein sequence in individuals of Asian ancestry and to determine the functionality of such variants, all exons and adjacent intronic segments were resequenced in 96 individuals and the observed variants cloned and analyzed. Two novel SNPs, including one coding change, S332 to Y332, were identified. Y332 and all other reported variants in Asians were cloned for study in vitro. Secretion efficiency was determined by Western blotting of protein from cell lysates and media. Cholesteryl ester transfer activity was measured in vitro by following the extent of transfer of fluorescently labeled substrate. Y332, Q296 and G442 are all secreted less well than wild type protein but retain significant transfer activity. P151 is not secreted and no transfer activity was detected. These protein variants should all contribute to higher HDL cholesterol in individuals carrying them. Additionally, a splicing variation that causes a protein truncation and non-functional CETP that has been reported predominantly in Asians was also found in two individuals of European ancestry and was on the same haplotype background in the two populations, suggesting a common origin of this null variant. This improved understanding of CETP variation in Asians will allow a more effective comparison of studies across populations.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.