Genetic variants shape rheumatoid arthritis-specific transcriptomic features in CD4+ T cells through differential DNA methylation, explaining a substantial proportion of heritability

DNA甲基化 差异甲基化区 转录组 甲基化 数量性状位点 生物 遗传学 表观遗传学 基因 基因组 表观遗传学 遗传力 单核苷酸多态性 全基因组关联研究 基因型 表达数量性状基因座 计算生物学 基因表达
作者
Eunji Ha,So‐Young Bang,Jiwoo Lim,Jun Ho Yun,Jeong‐Min Kim,Jae-Bum Bae,Hye‐Soon Lee,Bong-Jo Kim,Kwang-Woo Kim,Sang‐Cheol Bae
出处
期刊:Annals of the Rheumatic Diseases [BMJ]
卷期号:80 (7): 876-883 被引量:18
标识
DOI:10.1136/annrheumdis-2020-219152
摘要

Objective CD4 + T cells have been suggested as the most disease-relevant cell type in rheumatoid arthritis (RA) in which RA-risk non-coding variants exhibit allele-specific effects on regulation of RA-driving genes. This study aimed to understand RA-specific signatures in CD4 + T cells using multi-omics data, interpreting inter-omics relationships in shaping the RA transcriptomic landscape. Methods We profiled genome-wide variants, gene expression and DNA methylation in CD4 + T cells from 82 patients with RA and 40 healthy controls using high-throughput technologies. We investigated differentially expressed genes (DEGs) and differential methylated regions (DMRs) in RA and localised quantitative trait loci (QTLs) for expression and methylation. We then integrated these based on individual-level correlations to inspect DEG-regulating sources and investigated the potential regulatory roles of RA-risk variants by a partitioned-heritability enrichment analysis with RA genome-wide association summary statistics. Results A large number of RA-specific DEGs were identified (n=2575), highlighting T cell differentiation and activation pathways. RA-specific DMRs, preferentially located in T cell regulatory regions, were correlated with the expression levels of 548 DEGs mostly in the same topologically associating domains. In addition, expressional variances in 771 and 83 DEGs were partially explained by expression QTLs for DEGs and methylation QTLs (meQTLs) for DEG-correlated DMRs, respectively. A large number of RA variants were moderately to strongly correlated with meQTLs. DEG-correlated DMRs, enriched with meQTLs, had strongly enriched heritability of RA. Conclusion Our findings revealed that the methylomic changes, driven by RA heritability-explaining variants, shape the differential expression of a substantial fraction of DEGs in CD4 + T cells in patients with RA, reinforcing the importance of a multidimensional approach in disease-relevant tissues.
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