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PMID: 42498843 已发表 · aheadofprint 英语

RADX protects against intestinal inflammation by restraining IFI16-mediated innate immunity.

Xian H, Huang W, Chen Z, Li L, Xiong L, Zhu J, Jin H, Li X, Song L, Chen P, Ren L, Wang W, Fang R, Chen X, Lei W, Zhang D, Liao W, Huang Y, Lew AM, Cui J, Gong S, Huang J, Rosa Duque JS, Zhi M, Geng L, Zhou W, Zhang Y

摘要

Genomic instability is increased in patients with inflammatory bowel disease (IBD), yet whether it contributes directly to disease pathogenesis remains unclear. Here, we identify RADX, a structural antagonist to RAD51 and a key regulator of replication fork stability, as a critical suppressor of intestinal inflammation by limiting innate immune sensing of replication-associated DNA damage. RADX deficiency exacerbates experimental colitis, with macrophages serving as the principal mediators of this phenotype. Mechanistically, RADX competes with the DNA sensor IFI16 for binding to single-stranded DNA (ssDNA). Loss of RADX promotes ssDNA accumulation, triggering IFI16-dependent activation of NF-κB signaling and inflammasome assembly, thereby driving intestinal inflammation. Consistent with these findings, two RADX variants identified in patients with IBD associate with reduced RADX protein expression, increased DNA damage signaling, and elevated IL-1β levels. Pharmacological inhibition of RAD51 with RI-1 alleviated colitis in both wild-type and Radx-deficient mice. Together, these findings establish a mechanistic link between genome instability and intestinal inflammation, identify a RADX-IFI16 checkpoint that restrains pathogenic innate immune activation, and nominate modulation of replication stress as a therapeutic strategy for IBD.

文献信息
期刊
EMBO molecular medicine
期刊简称
EMBO Mol Med
ISSN
1757-4684
发表日期
2026-07-24
语言
英语
国家/地区
Germany
NLM ID
101487380
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