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Major histocompatibility complex harbors widespread genotypic variability of non-additive risk of rheumatoid arthritis including epistasis

机译:主要组织相容性复合物具有广泛的基因型变异性包括类风湿性关节炎(包括上位性)的非累加风险

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摘要

Genotypic variability based genome-wide association studies (vGWASs) can identify potentially interacting loci without prior knowledge of the interacting factors. We report a two-stage approach to make vGWAS applicable to diseases: firstly using a mixed model approach to partition dichotomous phenotypes into additive risk and non-additive environmental residuals on the liability scale and secondly using the Levene’s (Brown-Forsythe) test to assess equality of the residual variances across genotype groups per marker. We found widespread significant (P < 2.5e-05) vGWAS signals within the major histocompatibility complex (MHC) across all three study cohorts of rheumatoid arthritis. We further identified 10 epistatic interactions between the vGWAS signals independent of the MHC additive effects, each with a weak effect but jointly explained 1.9% of phenotypic variance. PTPN22 was also identified in the discovery cohort but replicated in only one independent cohort. Combining the three cohorts boosted power of vGWAS and additionally identified TYK2 and ANKRD55. Both PTPN22 and TYK2 had evidence of interactions reported elsewhere. We conclude that vGWAS can help discover interacting loci for complex diseases but require large samples to find additional signals.
机译:基于基因型变异性的全基因组关联研究(vGWAS)可以识别潜在的相互作用位点,而无需事先了解相互作用因素。我们报告了使vGWAS适用于疾病的两阶段方法:首先使用混合模型方法将二分类表型在责任等级上划分为加性风险和非加性环境残差,其次使用Levene(Brown-Forsythe)检验进行评估每个标记的基因型组之间的剩余方差相等。我们在风湿性关节炎的所有三个研究队列中的主要组织相容性复合体(MHC)中发现了广泛的(P <2.5e-05)vGWAS信号。我们进一步确定了vGWAS信号之间的10个上位相互作用,独立于MHC的加性作用,每个作用均较弱,但共同解释了表型变异的1.9%。 PTPN22在发现队列中也被发现,但仅在一个独立队列中被复制。将这三个队列组合在一起,可以增强vGWAS的功能,并另外确定TYK2和ANKRD55。 PTPN22和TYK2都有在其他地方报道过相互作用的证据。我们得出结论,vGWAS可以帮助发现复杂疾病的相互作用基因座,但需要大量样本才能发现其他信号。

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