GEO series
IRF3 attenuates hypoxia signaling by retaining HIF-α in the cytoplasm
GSE311482
Homo sapiens
Expression profiling by high throughput sequencing
21 samples
2025/11/25
GPL24676
Summary
Interferon regulatory factor 3 (IRF3) functions as a key transcription factor in the innate antiviral immune response, which is depended on its nuclear localization. However, its function in the cytoplasm during non-infection states remains largely unknown. In this study, we found that resting cytoplasmic IRF3 interacts with HIF-1α and HIF-2α, two master regulators of hypoxia signaling. This interaction retains HIF-α in the cytoplasm under hypoxic conditions, preventing it from exerting their transcription factor function and attenuating hypoxia signaling. Disruption of IRF3 in both mice and zebrafish resulted in increased expression of hypoxia response genes and enhanced tolerance to hypoxia. These findings suggest that, in the absence of viral infection, cytoplasmic IRF3 modulates hypoxia signaling by retaining HIF-α in the cytoplasm under hypoxic conditions.
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Paper (PMID 41520336) ↗
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