Original Article

Subject Categories: Genetics

Journal of Investigative Dermatology (2006) 126, 603–606. doi:10.1038/sj.jid.5700108; published online 5 January 2006

Investigation of the Chromosome 17q25 PSORS2 Locus in Atopic Dermatitis

Nilesh Morar1, Anne M Bowcock2, John I Harper3, William O C M Cookson1 and Miriam F Moffatt1

  1. 1Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, UK
  2. 2Washington University School of Medicine, St Louis, USA
  3. 3Great Ormond Street Hospital and Institute of Child Health, London, UK

Correspondence: Dr Nilesh Morar, Wellcome Trust Centre for Human Genetics, Asthma Genetics Group, University of Oxford, Oxford, UK. E-mail: nilesh.morar@well.ox.ac.uk

Received 17 August 2005; Revised 27 October 2005; Accepted 31 October 2005; Published online 5 January 2006.

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Abstract

Psoriasis and atopic dermatitis (AD) are strongly genetic and inherited as multi-factorial traits. In both diseases, linkage has been reported to chromosome 17q25. For psoriasis, the locus has been labelled PSORS2. Two peaks of association here contain the psoriasis candidate genes SLC9A3R (solute carrier family 9, isoform 3 regulatory factor), NAT9 (N-acetyltransferase superfamily), and RAPTOR (rapamycin (TOR)). We genotyped 14 of the most significantly associated single-nucleotide polymorphisms (SNPs) in these genes in a panel of 148 families (ECZ1) identified through a proband with active AD. The panel contains 350 siblings and 245 sib-pairs. Replication of positive findings was sought in a second panel, MRC-E, comprising of 278 families, 634 siblings, and 470 sib-pairs. SNP genotyping was carried out by Sequenom MassArray technology. Using family-based tests of association (transmission disequilibrium test), rs878906, in intron 3 of NAT9, was significantly associated with AD (P=0.010) in the ECZ1 panel. In the MRC-E panel, rs895691, between the end of exon 6 of SLC9A3R1 and exon 7 of NAT9, was associated with AD (P=0.037). These were not significant when multiple comparisons were taken into account. Haplotype analysis revealed no significant associations in either population. These results suggest that the psoriasis candidate genes do not account for previously observed linkage of the 17q25 PSORS2 locus to AD.

Abbreviations:

AD, atopic dermatitis; NAT9, N-acetyltransferase superfamily; RAPTOR, rapamycin (TOR); SLC9A3R1, solute carrier family 9, isoform 3 regulatory factor; SNP, single-nucleotide polymorphism

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