Gene–gene and gene–environment interactions in ulcerative colitis

被引:8
作者
Ming-Hsi Wang
Claudio Fiocchi
Xiaofeng Zhu
Stephan Ripke
M. Ilyas Kamboh
Nancy Rebert
Richard H. Duerr
Jean-Paul Achkar
机构
[1] Cleveland Clinic,Department of Gastroenterology and Hepatology, Digestive Disease Institute
[2] Cleveland Clinic,Department of Pathobiology, Lerner Research Institute
[3] Case Western Reserve University,Department of Epidemiology and Biostatistics
[4] Massachusetts General Hospital,Analytic and Translational Genetics Unit
[5] Broad Institute of Harvard and MIT,Stanley Center for Psychiatric Research
[6] University of Pittsburgh,Department of Human Genetics
[7] Graduate School of Public Health,Division of Gastroenterology, Hepatology, and Nutrition, Department of Medicine
[8] University of Pittsburgh School of Medicine,undefined
来源
Human Genetics | 2014年 / 133卷
关键词
Ulcerative Colitis; Primary Sclerosing Cholangitis; Genetic Interaction; Human Leukocyte Antigen Class; GWAS Dataset;
D O I
暂无
中图分类号
学科分类号
摘要
Genome-wide association studies (GWAS) have identified at least 133 ulcerative colitis (UC) associated loci. The role of genetic factors in clinical practice is not clearly defined. The relevance of genetic variants to disease pathogenesis is still uncertain because of not characterized gene–gene and gene–environment interactions. We examined the predictive value of combining the 133 UC risk loci with genetic interactions in an ongoing inflammatory bowel disease (IBD) GWAS. The Wellcome Trust Case–Control Consortium (WTCCC) IBD GWAS was used as a replication cohort. We applied logic regression (LR), a novel adaptive regression methodology, to search for high-order interactions. Exploratory genotype correlations with UC sub-phenotypes [extent of disease, need of surgery, age of onset, extra-intestinal manifestations and primary sclerosing cholangitis (PSC)] were conducted. The combination of 133 UC loci yielded good UC risk predictability [area under the curve (AUC) of 0.86]. A higher cumulative allele score predicted higher UC risk. Through LR, several lines of evidence for genetic interactions were identified and successfully replicated in the WTCCC cohort. The genetic interactions combined with the gene-smoking interaction significantly improved predictability in the model (AUC, from 0.86 to 0.89, P = 3.26E−05). Explained UC variance increased from 37 to 42 % after adding the interaction terms. A within case analysis found suggested genetic association with PSC. Our study demonstrates that the LR methodology allows the identification and replication of high-order genetic interactions in UC GWAS datasets. UC risk can be predicted by a 133 loci and improved by adding gene–gene and gene–environment interactions.
引用
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页码:547 / 558
页数:11
相关论文
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