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Genetics

Mapping the CETP gene reveals seven distinct linkage blocks and yields an optimal set of eleven tagging SNPs for future association studies (Ann Hum Genet 2006)

Original title: High-resolution characterization of linkage disequilibrium structure and selection of tagging single nucleotide polymorphisms: application to the cholesteryl ester transfer protein gene

Ann Hum Genet · · 4

Horne BD, Carlquist JF, Cannon-Albright LA, Muhlestein JB, McKinney JT, Kolek MJ, Clarke JL, Anderson JL, Camp NJ

This study aimed to select tagging single nucleotide polymorphisms (tSNPs) to comprehensively represent genetic variability across the CETP gene, since fuller characterization of intragenic variation could improve candidate gene association studies. Nineteen SNPs were discovered in 50 unrelated individuals, and 13 intronic SNPs were added from the literature; all 32 SNPs were genotyped in 339 healthy individuals and 190 coronary artery disease patients. Using phased haplotypes and principal component analysis, seven linkage disequilibrium (LD) groups were identified in healthy individuals accounting for 93.4% of observed genetic variation, revealing a complex LD structure involving both recombination and mutation; eleven tSNPs were selected to represent this structure. Results in CAD patients were essentially the same, and the selected tSNPs successfully represented association evidence for all other SNPs studied. The authors conclude this provides an optimal tSNP set for future CETP association analyses.

Read the paper (DOI)PubMed

Original abstract

Full characterization of intragenic variation may improve candidate gene associations. This study selected tagging (t) single nucleotide polymorphisms (SNPs) to comprehensively represent genetic variability in the cholesteryl ester transfer protein (CETP) gene. Nineteen SNPs were identified in 50 unrelated individuals in the SNP discovery phase, and 13 intronic SNPs were added from the literature. These 32 SNPs were genotyped in 339 apparently healthy individuals and 190 coronary artery disease (CAD) patients. Using phased haplotypes, linkage disequilibrium (LD) structure was characterized and tSNPs selected using a principal component analysis (PCA) method. In healthy individuals, seven LD groups were identified that accounted for 93.4% of the observed genetic variation. These LD groups highlighted a complex LD structure for CETP, including both recombination and mutation, and eleven tSNPs were selected. Among CAD patients the results were essentially the same. Results from PCA using diploid genotype data were reasonably comparable. Finally, the selected tSNPs successfully represented the association evidence discovered for all of the other SNPs studied. This study provides an optimal set of tSNPs for association analyses of CETP. The observed complexity of LD structure highlights the importance of using methods, such as PCA, that allow for multiple dynamics in intragenic LD structure.

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