Genetics
New statistical method for analyzing gene haplotypes is validated using CETP variants and HDL cholesterol data from the REGRESS trial (Ann Hum Genet 2003)
Original title: Estimation of multilocus haplotype effects using weighted penalised log-likelihood: analysis of five sequence variations at the cholesteryl ester transfer protein gene locus
This methodology paper introduces a new statistical approach for direct haplotype analysis in unrelated individuals, addressing two problems: the need to assign a single most-likely haplotype pair to heterozygous subjects (solved by including all compatible haplotype pairs weighted by posterior probability via Bayes theorem, re-estimated iteratively), and unstable effect estimates for rare haplotypes (solved by penalizing differences in effect estimates between haplotypes sharing similar alleles). The method was demonstrated using CETP gene haplotypes built from five closely linked polymorphisms, together with baseline CETP and HDL-cholesterol concentrations from the REGRESS population. The authors show that this weighted penalized log-likelihood model produced more stable haplotype effect estimates than an approach based only on unambiguous patients.
Original abstract
Direct analyses of haplotype effects can be used to identify those specific combinations of alleles that are associated with a specific phenotype. We introduce a method for direct haplotype analysis that solves two problems that arise when haplotypes are analysed in populations of unrelated subjects. Instead of assigning a single, most likely, haplotype pair to multiple heterozygous subjects, all haplotype pairs compatible with their genotype were determined and the posterior probabilities of these pairs were calculated using Bayes' theorem and estimated haplotype frequencies. For the individual patients, all possible haplotype pairs were included in the statistical analysis using the posterior probabilities as weights, which were re-estimated in an iterative process together with the haplotype effects. The second problem of unstable haplotype effect estimates, due to the numerous haplotypes and the low frequency at which some occur, was solved by assuming that haplotypes sharing the same alleles show a similar effect and that the extent of this similarity relates to the number of alleles shared. These assumptions were incorporated in a weighted log-likelihood model by introducing a penalty, where differences in effects of similar haplotypes were penalised. Using CETP gene haplotypes, consisting of five closely linked polymorphisms, and baseline CETP and HDL-C concentrations from the REGRESS population, we demonstrated that the model resulted in more stable effects than estimates based on unambiguous patients only.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.