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Genomic architecture of inflammatory bowel disease in five families with multiple affected individuals.

Authors :
Stittrich AB
Ashworth J
Shi M
Robinson M
Mauldin D
Brunkow ME
Biswas S
Kim JM
Kwon KS
Jung JU
Galas D
Serikawa K
Duerr RH
Guthery SL
Peschon J
Hood L
Roach JC
Glusman G
Source :
Human genome variation [Hum Genome Var] 2016 Jan 07; Vol. 3, pp. 15060. Date of Electronic Publication: 2016 Jan 07 (Print Publication: 2016).
Publication Year :
2016

Abstract

Currently, the best clinical predictor for inflammatory bowel disease (IBD) is family history. Over 163 sequence variants have been associated with IBD in genome-wide association studies, but they have weak effects and explain only a fraction of the observed heritability. It is expected that additional variants contribute to the genomic architecture of IBD, possibly including rare variants with effect sizes larger than the identified common variants. Here we applied a family study design and sequenced 38 individuals from five families, under the hypothesis that families with multiple IBD-affected individuals harbor one or more risk variants that (i) are shared among affected family members, (ii) are rare and (iii) have substantial effect on disease development. Our analysis revealed not only novel candidate risk variants but also high polygenic risk scores for common known risk variants in four out of the five families. Functional analysis of our top novel variant in the remaining family, a rare missense mutation in the ubiquitin ligase TRIM11, suggests that it leads to increased nuclear factor of kappa light chain enhancer in B-cells (NF-κB) signaling. We conclude that an accumulation of common weak-effect variants accounts for the high incidence of IBD in most, but not all families we analyzed and that a family study design can identify novel rare variants conferring risk for IBD with potentially large effect size, such as the TRIM11 p.H414Y mutation.

Details

Language :
English
ISSN :
2054-345X
Volume :
3
Database :
MEDLINE
Journal :
Human genome variation
Publication Type :
Academic Journal
Accession number :
27081563
Full Text :
https://doi.org/10.1038/hgv.2015.60