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Implications of inter-population linkage disequilibrium patterns on the approach to a disease association study in the human MHC class III

Hanchard, Neil; Diakite, Mahamadou; Koch, Oliver; Keating, Brendan; Pinder, Margaret; Jallow, Muminatou; Sisay-Joof, Fatou; Nijnik, Anastasia; Wilson, Jonathan; Udalova, Irina; Kwiatkowski, Dominic; Rockett, Kirk
There is presently much interest in utilizing patterns of linkage disequilibrium (LD) to further genetic association studies. This is particularly pertinent in the class III region of the human major histocompatibility complex (MHC), which has been extensively studied as a disease susceptibility locus in a number of ethnic groups. To date, however, few studies of LD in the MHC have considered non-Caucasian populations. With the advent of large-scale haplotyping of the human genome, the question of utilizing LD patterns across populations has come to the fore. We have previously used LD mapping to direct an MHC class III association study in a UK Caucasian population. As an extension of this, we sought to determine to what extent the pattern of LD observed in that study could be used to conduct a similar study in a West African Gambian population. We found that broad patterns of LD were similar in the two populations, resulting in similar candidate region delineations, but at a higher resolution, marker-specific patterns of LD and population-dependent allele frequencies confounded the choice of regional tagging SNPs. Our results have implications for the applicability of large-scale haplotype maps such as the HapMap to complex regions like the MHC.
PMID: 16738941
ISSN: 0093-7711
CID: 5477702

Allele-specific repression of lymphotoxin-alpha by activated B cell factor-1

Knight, Julian C; Keating, Brendan J; Kwiatkowski, Dominic P
Genetic variation at the human LTA locus, encoding lymphotoxin-alpha, is associated with susceptibility to myocardial infarction, asthma and other diseases. By detailed haplotypic analysis of the locus, we identified a single-nucleotide polymorphism (SNP) at LTA+80 as a main predictor of LTA protein production by human B cells. We found that activated B-cell factor-1 (ABF-1) binds to this site in vitro and suppresses reporter gene expression, but only in the presence of the LTA+80A allele. Using haplotype-specific chromatin immunoprecipitation, we confirmed that ABF-1 is preferentially recruited to the low-producer allele in vivo. These findings provide a molecular model of how LTA expression may be genetically regulated by allele-specific recruitment of the transcriptional repressor ABF-1.
PMID: 15052269
ISSN: 1061-4036
CID: 5477682

In vivo characterization of regulatory polymorphisms by allele-specific quantification of RNA polymerase loading

Knight, Julian C; Keating, Brendan J; Rockett, Kirk A; Kwiatkowski, Dominic P
In vivo characterization of regulatory polymorphisms is a key requirement for next-generation human genetic analysis. Here we describe haploChIP, a method that uses chromatin immunoprecipitation (ChIP) and mass spectrometry to identify differential protein-DNA binding in vivo associated with allelic variants of a gene. We demonstrate this approach with the imprinted gene SNRPN. HaploChIP showed close correlation between the level of bound phosphorylated RNA polymerase II at the SNRPN locus and allele-specific expression. Application of the approach to the TNF/LTA locus identified functionally important haplotypes that correlate with allele-specific transcription of LTA. The haploChIP method may be useful in high-throughput screening for common DNA polymorphisms that affect gene regulation in vivo.
PMID: 12627232
ISSN: 1061-4036
CID: 5477672