Viral infection activates the IRF1-BAK axis to drive mitochondria-derived inflammation

Mitochondria can drive the development of inflammatory pathogenesis through releasing pro-inflammatory DAMPs, a process often triggered during virus infection. Whether a common mechanism exists that promotes virus-triggered mitochondria-derived inflammation is currently unknown. Here, we report that BAK is an interferon-stimulated gene that is up-regulated by the STAT1-IRF1 axis during virus infection to induce mitochondria-derived inflammatory pathogenesis. Viral infection triggers STAT1-dependent up-regulation of IRF1, which binds to an identified ISRE site in the BAK -promoter, inducing BAK up-regulation. Up-regulated BAK accumulates in the mitochondria triggering mitochondrial outer-membrane permeabilization and inflammatory responses. Both RNA and DNA viruses trigger the IRF1-mediated BAK up-regulation and mitochondria-derived inflammation. Using the Bak -/- mouse model, we showed that both IAV and SFTSV, two viruses that induce severe inflammation in patients, trigger BAK up-regulation and BAK-dependent lethal inflammation. These results reveal a common mechanism that drives mitochondria-derived pathogenic inflammation, which can be targeted for developing anti-inflammatory therapeutics.

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Publication Details

Journal
Cell Reports
Published
2026-09-16
DOI
https://doi.org/10.1016/j.celrep.2026.117968
Primary Topic
interferon and immune responses
Type
article
Field-Weighted Citation Impact
0.00

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article

Viral infection activates the IRF1-BAK axis to drive mitochondria-derived inflammation

Meidi Ye, Yulan Zhang, Zhenxing Zhou, Zihan Guan et al.
Cell Reports
interferon and immune responses
article

Viral infection activates the IRF1-BAK axis to drive mitochondria-derived inflammation

Meidi Ye, Yulan Zhang, Zhenxing Zhou, Zihan Guan, Zhenqiong Guan, Ke Peng, Yifei Wang, Shufen Li
article en

Abstract

Mitochondria can drive the development of inflammatory pathogenesis through releasing pro-inflammatory DAMPs, a process often triggered during virus infection. Whether a common mechanism exists that promotes virus-triggered mitochondria-derived inflammation is currently unknown. Here, we report that BAK is an interferon-stimulated gene that is up-regulated by the STAT1-IRF1 axis during virus infection to induce mitochondria-derived inflammatory pathogenesis. Viral infection triggers STAT1-dependent up-regulation of IRF1, which binds to an identified ISRE site in the BAK -promoter, inducing BAK up-regulation. Up-regulated BAK accumulates in the mitochondria triggering mitochondrial outer-membrane permeabilization and inflammatory responses. Both RNA and DNA viruses trigger the IRF1-mediated BAK up-regulation and mitochondria-derived inflammation. Using the Bak -/- mouse model, we showed that both IAV and SFTSV, two viruses that induce severe inflammation in patients, trigger BAK up-regulation and BAK-dependent lethal inflammation. These results reveal a common mechanism that drives mitochondria-derived pathogenic inflammation, which can be targeted for developing anti-inflammatory therapeutics.

Cell ReportsVol. 45(10)
Wuhan Institute of Virology (CN)
National Natural Science Foundation of China, National Major Science and Technology Projects of China
Openalex Percentile: Top 17%
interferon and immune responses
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Viral infection activates the IRF1-BAK axis to drive mitochondria-derived inflammation — Meidi Ye, Yulan Zhang, et al. · Cell Reports (2026) | TGRS Research Map | TGRS