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February 5, 2026Veterinary Research0 citationsOpen Access

Foot-and-mouth disease virus VP4 interferes with host interferon response by targeting the nuclear translocation of interferon regulatory factor 3 (IRF3)

ASAshan SubasingheNNN. A. Nadeeka NethminiAWAsela Weerawardhana

Key Result

Foot-and-mouth disease virus VP4 protein negatively regulates host type I interferon signaling by competitively binding to KPNA4 and inhibiting the nuclear translocation of IRF3.

Key Points

  • Investigate how FMDV VP4 interferes with the nuclear translocation of IRF3 during the interferon response.
  • Demonstrated interaction between VP4 and IRF3
  • Analyzed competitive binding of VP4 to KPNA4
  • Assessed effects on IRF3 nuclear translocation
  • Examined viral replication enhancement
  • VP4 binds competitively to KPNA4, inhibiting IRF3 translocation
  • Did not affect IRF3 dimerization or phosphorylation
  • Increased replication of RNA and DNA viruses
  • Suppressed interferon production through IRF3 signaling inhibition

Structured PICO

Does FMDV VP4 inhibit host interferon response by targeting IRF3 nuclear translocation?

P
Population
In vitro/cell models studying Foot-and-mouth disease virus (FMDV) and host interferon response
I
Intervention
FMDV VP4 protein
C
Comparator
Control/absence of VP4
O
Outcome
Nuclear translocation of IRF3 and interferon (IFN) productionsurrogate

FMDV VP4 negatively regulates host type I IFN signaling by competitively binding KPNA4 to inhibit IRF3 nuclear translocation, providing insight into viral immune evasion mechanisms.

Abstract

Abstract Upon RNA virus infection, nuclear translocation of activated transcriptional factors via the RNA-sensing signal pathway is a key event in the interferon (IFN)-mediated antiviral response, and a specific target of viral immune evasion. Foot-and-mouth disease virus (FMDV) causes an acute vesicular disease in cloven-hoofed animals and poses a serious economic risk to the dairy industry. FMDV VP4, one of the structural proteins, is an internal protein of the viral capsid and is known to play an important role in cell entry. Here, we demonstrate a novel molecular mechanism by which VP4 inhibits karyopherin (KPNA)-mediated antiviral immune responses. VP4 and IRF3 specifically interacted with the nuclear localization signal (NLS) binding site on the KPNA4 molecule, and VP4 inhibited the interaction between KPNA4 and IRF3 via competitive binding with higher affinity. Thus, VP4 inhibited nuclear translocation of IRF3 without affecting dimerization and phosphorylation of IRF3. Consequently, VP4 significantly enhanced the replication of RNA and DNA viruses by suppressing IFN production through inhibition of the IRF3-mediated type I IFN signaling pathway. Taken together, these results suggest that VP4 negatively regulates host type I IFN signaling by inhibiting the nuclear translocation of IRF3 and provide a critical implication for better understanding the pathogenesis of FMDV.

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Cite This Study

Subasinghe et al. (2026) studied Foot-and-mouth disease virus infection. FMDV VP4 protein vs. Control vector was evaluated on Nuclear translocation of IRF3 and type I IFN signaling. Foot-and-mouth disease virus VP4 protein negatively regulates host type I interferon signaling by competitively binding to KPNA4 and inhibiting the nuclear translocation of IRF3.

synapsesocial.com/papers/698435e5f1d9ada3c1fb540fhttps://doi.org/10.1186/s13567-026-01712-2
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