Genetics
CETP TaqI RFLP frequencies are remarkably uniform across Italian, Greek, and other Caucasian populations (Hum Hered 1994)
Original title: DNA polymorphisms of the cholesteryl ester transfer protein (CETP) gene in Italian and Greek migrants to Australia
Two common TaqI restriction fragment length polymorphisms of the CETP gene were genotyped in 271 Italian-born and 170 Greek-born migrants to Melbourne, Australia, with a smaller subset also examined for the EcoNI RFLP. The TaqI A RFLP showed the least allele-frequency variation in both ethnic groups, and no significant regional heterogeneity was detected within either Greece or Italy for either TaqI RFLP. There was no difference between Italians and Greeks for the TaqI A polymorphism, while variability at the TaqI B RFLP reached only borderline significance between the groups. Comparison with other Caucasian populations showed allele frequencies of all three CETP RFLPs are remarkably uniform across Caucasians overall, with the TaqI B polymorphism being the most variable of the three.
Original abstract
The distribution of two common TaqI restriction fragment length polymorphisms (RFLPs) of the cholesteryl ester transfer protein (CETP) gene were determined in 271 Italian-born and 170 Greek-born migrants to Melbourne, Australia. A much smaller number were examined for the EcoNI RFLP of the same gene. Allele frequencies of the TaqI A RFLP exhibited the least variation in both ethnic groups, and no significant regional heterogeneity in allele or genotype frequencies of either TaqI RFLP was detected for Greece or Italy. There was no difference between Italians and Greeks for the TaqI A polymorphism and the variability at the B RFLP was of borderline significance. Comparisons with other Caucasian populations revealed that allele frequencies of all three CETP RFLPs are remarkably uniform within Caucasians, with the TaqI B polymorphism being the most variable.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.