Systematic identification of genomic elements that regulateFCGR2Aexpression and harbor variants linked with autoimmune disease

生物 增强子 转录因子 CTCF公司 遗传学 DNA结合位点 基因 全基因组关联研究 免疫系统 基因表达 计算生物学 发起人 基因型 单核苷酸多态性
作者
Johanna Dahlqvist,Charles P. Fulco,John Ray,Thomas Liechti,Carl G. de Boer,David Lieb,Thomas Eisenhaure,J Engreitz,Mario Roederer,Nir Hacohen
出处
期刊:Human Molecular Genetics [Oxford University Press]
卷期号:31 (12): 1946-1961 被引量:12
标识
DOI:10.1093/hmg/ddab372
摘要

FCGR2A binds antibody-antigen complexes to regulate the abundance of circulating and deposited complexes along with downstream immune and autoimmune responses. Although the abundance of FCRG2A may be critical in immune-mediated diseases, little is known about whether its surface expression is regulated through cis genomic elements and non-coding variants. In the current study, we aimed to characterize the regulation of FCGR2A expression, the impact of genetic variation and its association with autoimmune disease.We applied CRISPR-based interference and editing to scrutinize 1.7 Mb of open chromatin surrounding the FCGR2A gene to identify regulatory elements. Relevant transcription factors (TFs) binding to these regions were defined through public databases. Genetic variants affecting regulation were identified using luciferase reporter assays and were verified in a cohort of 1996 genotyped healthy individuals using flow cytometry.We identified a complex proximal region and five distal enhancers regulating FCGR2A. The proximal region split into subregions upstream and downstream of the transcription start site, was enriched in binding of inflammation-regulated TFs, and harbored a variant associated with FCGR2A expression in primary myeloid cells. One distal enhancer region was occupied by CCCTC-binding factor (CTCF) whose binding site was disrupted by a rare genetic variant, altering gene expression.The FCGR2A gene is regulated by multiple proximal and distal genomic regions, with links to autoimmune disease. These findings may open up novel therapeutic avenues where fine-tuning of FCGR2A levels may constitute a part of treatment strategies for immune-mediated diseases.

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