| Literature DB >> 35513721 |
Kousuke Mouri1, Michael H Guo2,3, Carl G de Boer3,4, Michelle M Lissner5,6, Ingrid A Harten7, Gregory A Newby3,8,9,10, Hannah A DeBerg7, Winona F Platt7, Matteo Gentili3, David R Liu3,8,9,10, Daniel J Campbell5,11, Nir Hacohen12,13, Ryan Tewhey14, John P Ray15,16,17.
Abstract
Genome-wide association studies (GWASs) have uncovered hundreds of autoimmune disease-associated loci; however, the causal genetic variants within each locus are mostly unknown. Here, we perform high-throughput allele-specific reporter assays to prioritize disease-associated variants for five autoimmune diseases. By examining variants that both promote allele-specific reporter expression and are located in accessible chromatin, we identify 60 putatively causal variants that enrich for statistically fine-mapped variants by up to 57.8-fold. We introduced the risk allele of a prioritized variant (rs72928038) into a human T cell line and deleted the orthologous sequence in mice, both resulting in reduced BACH2 expression. Naive CD8 T cells from mice containing the deletion had reduced expression of genes that suppress activation and maintain stemness and, upon acute viral infection, displayed greater propensity to become effector T cells. Our results represent an example of an effective approach for prioritizing variants and studying their physiologically relevant effects.Entities:
Mesh:
Year: 2022 PMID: 35513721 DOI: 10.1038/s41588-022-01056-5
Source DB: PubMed Journal: Nat Genet ISSN: 1061-4036 Impact factor: 41.307