Inhibition of Influenza A Virus Replication by TRIM14 via Its Multifaceted Protein-Protein Interaction With NP

Xiangwei Wu1,2, Jingfeng Wang1,2, Shanshan Wang3

  • 1Institute of Systems Medicine, Chinese Academy of Medical Sciences and Peking Union Medical College, Suzhou, China.

Insights

Tripartite motif 14 (TRIM14) protein restricts influenza A virus (IAV) replication by targeting the viral nucleoprotein (NP) for degradation, independent of interferon pathways. This interaction disrupts viral RNP formation and replication, revealing a novel host-pathogen interaction mechanism.

Area of Science:

  • Virology
  • Immunology
  • Molecular Biology

Background:

  • Influenza A virus (IAV) poses a global health risk, with host-pathogen interactions dictating its pathogenicity.
  • Tripartite motif 14 (TRIM14) is known to regulate host defense mechanisms like type I interferon and NF-κB induction against viral infections.

Purpose of the Study:

  • To investigate the role of TRIM14 in restricting IAV replication.
  • To elucidate the molecular mechanism by which TRIM14 interacts with IAV components.

Main Methods:

  • Investigated TRIM14's effect on IAV replication independently of interferon and NF-κB pathways.
  • Analyzed the interaction between different TRIM14 domains and the viral nucleoprotein (NP).
  • Assessed the impact of TRIM14-NP interaction on NP stability, ubiquitination, proteasomal degradation, and NP translocation.

Main Results:

  • TRIM14 restricts IAV replication through a mechanism independent of type I interferon and NF-κB.
  • TRIM14 interacts with IAV NP, with the PRYSPRY domain inhibiting NP stability and replication, while the ΔS2 domain promotes NP stabilization.
  • TRIM14 induces K48-linked ubiquitination and proteasomal degradation of NP, blocking its nuclear translocation and inhibiting IAV propagation.

Conclusions:

  • TRIM14 inhibits IAV replication by targeting NP for degradation, disrupting RNP formation and nuclear translocation.
  • This study reveals a novel, multifaceted host-pathogen interaction mechanism involving TRIM14 and IAV NP.
  • The findings offer a new perspective on how host restriction factors modulate viral propagation.

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