A disease-associated gene desert directs macrophage inflammation through ETS2

炎症 疾病 生物 沙漠(哲学) 免疫学 巨噬细胞 医学 基因 遗传学 体外 政治学 病理 法学
作者
Christina T. Stankey,Christophe Bourges,Lea-Maxie Haag,Tabitha Turner‐Stokes,Ana P. Piedade,Christopher Palmer-Jones,Ilenia Papa,Mariana Silva dos Santos,Q. Zhang,Andrew J. Cameron,Assya Legrini,Troy Zhang,Christopher S. Wood,Felicia New,L. O. Randzavola,L. Speidel,A. C. Brown,Anthony K Hall,Francesca Saffioti,E. C. Parkes,W Edwards,Haner Di̇reskeneli̇,Peter C. Grayson,Lindi Jiang,Peter A. Merkel,Güher Saruhan‐Direskeneli,Amr H. Sawalha,Enrico Tombetti,Alberto Quaglia,Douglas Thorburn,Julian C. Knight,A. P. Rochford,Charles Murray,Prajan Divakar,Mark Green,Emma Nye,James I. MacRae,Nigel B. Jamieson,Peter Skoglund,M. Zameel Cader,Chris Wallace,David Thomas,James Lee
出处
期刊:Nature [Nature Portfolio]
卷期号:630 (8016): 447-456 被引量:22
标识
DOI:10.1038/s41586-024-07501-1
摘要

Abstract Increasing rates of autoimmune and inflammatory disease present a burgeoning threat to human health 1 . This is compounded by the limited efficacy of available treatments 1 and high failure rates during drug development 2 , highlighting an urgent need to better understand disease mechanisms. Here we show how functional genomics could address this challenge. By investigating an intergenic haplotype on chr21q22—which has been independently linked to inflammatory bowel disease, ankylosing spondylitis, primary sclerosing cholangitis and Takayasu’s arteritis 3–6 —we identify that the causal gene, ETS2 , is a central regulator of human inflammatory macrophages and delineate the shared disease mechanism that amplifies ETS2 expression. Genes regulated by ETS2 were prominently expressed in diseased tissues and more enriched for inflammatory bowel disease GWAS hits than most previously described pathways. Overexpressing ETS2 in resting macrophages reproduced the inflammatory state observed in chr21q22-associated diseases, with upregulation of multiple drug targets, including TNF and IL-23. Using a database of cellular signatures 7 , we identified drugs that might modulate this pathway and validated the potent anti-inflammatory activity of one class of small molecules in vitro and ex vivo. Together, this illustrates the power of functional genomics, applied directly in primary human cells, to identify immune-mediated disease mechanisms and potential therapeutic opportunities.
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