Association analyses identify 38 susceptibility loci for inflammatory bowel disease and highlight shared genetic risk across populations

生物 炎症性肠病 全基因组关联研究 遗传学 遗传关联 溃疡性结肠炎 节点2 疾病 基因座(遗传学) 等位基因 遗传建筑学 基因型 克罗恩病 世系认同 单核苷酸多态性 单倍型 基因 数量性状位点 医学 病理 先天免疫系统 免疫系统
作者
Jimmy Z. Liu,Suzanne van Sommeren,Hailiang Huang,Siew C. Ng,Rudi Alberts,Atsushi Takahashi,Stephan Ripke,James Lee,Luke Jostins-Dean,Tejas Shah,Shifteh Abedian,Jae Hee Cheon,Judy H. Cho,Naser Ebrahim Daryani,Lude Franke,Yuta Fuyuno,Ailsa Hart,Ramesh C. Juyal,Garima Juyal,Won Ho Kim
出处
期刊:Nature Genetics [Springer Nature]
卷期号:47 (9): 979-986 被引量:2693
标识
DOI:10.1038/ng.3359
摘要

Rinse Weersma, Carl Anderson and colleagues report the results of a trans-ancestry association study of inflammatory bowel disease. They implicate 38 new susceptibility loci, and show that the variance explained by each IBD risk locus is consistent across diverse ancestries, with a few notable exceptions. Ulcerative colitis and Crohn's disease are the two main forms of inflammatory bowel disease (IBD). Here we report the first trans-ancestry association study of IBD, with genome-wide or Immunochip genotype data from an extended cohort of 86,640 European individuals and Immunochip data from 9,846 individuals of East Asian, Indian or Iranian descent. We implicate 38 loci in IBD risk for the first time. For the majority of the IBD risk loci, the direction and magnitude of effect are consistent in European and non-European cohorts. Nevertheless, we observe genetic heterogeneity between divergent populations at several established risk loci driven by differences in allele frequency (NOD2) or effect size (TNFSF15 and ATG16L1) or a combination of these factors (IL23R and IRGM). Our results provide biological insights into the pathogenesis of IBD and demonstrate the usefulness of trans-ancestry association studies for mapping loci associated with complex diseases and understanding genetic architecture across diverse populations.
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