Inflammatory bowel disease and rheumatoid arthritis share a common genetic structure

Guoling Cao, Qinghua Luo, Yunxiang Wu, Guanghua Chen
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Abstract

The comorbidity rate of inflammatory bowel disease (IBD) and rheumatoid arthritis (RA) is high; nevertheless, the reasons behind this high rate remain unclear. Their similar genetic makeup probably contributes to this comorbidity.Based on data obtained from the genome-wide association study of IBD and RA, we first assessed an overall genetic association by performing the linkage disequilibrium score regression (LDSC) analysis. Further, a local correlation analysis was performed by estimating the heritability in summary statistics. Next, the causality between the two diseases was analyzed by two-sample Mendelian randomization (MR). A genetic overlap was analyzed by the conditional/conjoint false discovery rate (cond/conjFDR) method.LDSC with specific expression of gene analysis was performed to identify related tissues between the two diseases. Finally, GWAS multi-trait analysis (MTAG) was also carried out.IBD and RA are correlated at the genomic level, both overall and locally. The MR results suggested that IBD induced RA. We identified 20 shared loci between IBD and RA on the basis of a conjFDR of <0.01. Additionally, we identified two tissues, namely spleen and small intestine terminal ileum, which were commonly associated with both IBD and RA.Herein, we proved the presence of a polygenic overlap between the genetic makeup of IBD and RA and provided new insights into the genetic architecture and mechanisms underlying the high comorbidity between these two diseases.
炎症性肠病和类风湿性关节炎具有共同的基因结构
炎症性肠病(IBD)和类风湿性关节炎(RA)的合并率很高;然而,这种高合并率背后的原因仍不清楚。基于从 IBD 和 RA 的全基因组关联研究中获得的数据,我们首先通过关联不平衡评分回归(LDSC)分析评估了整体遗传关联。此外,我们还通过汇总统计估算了遗传率,从而进行了局部相关性分析。接着,通过双样本孟德尔随机化(MR)分析了两种疾病之间的因果关系。通过条件/联合错误发现率(cond/conjFDR)方法分析遗传重叠。最后,还进行了GWAS多性状分析(MTAG)。MR结果表明,IBD会诱发RA。我们确定了 IBD 和 RA 之间的 20 个共享基因位点,其 conjFDR 均小于 0.01。此外,我们还发现了脾脏和小肠回肠末端这两个组织与 IBD 和 RA 都普遍相关。在此,我们证明了 IBD 和 RA 的基因构成之间存在多基因重叠,并对这两种疾病高度合并的基因结构和机制提供了新的见解。
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