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MEK/ERK-Mediated Transcriptional Repression of Metabolic Genes Confers Host Defense Against Gallid alphaherpesvirus 1 Infection via Modulating Fos Nuclear Translocation

  • Lu Cui
  • , Yu Zhang
  • , Haixia Zhang
  • , Shufeng Feng
  • , Yongxin Zhu
  • , Xuefeng Li
  • , Pengfei Liu
  • , Shengwang Liu
  • , Hai Li
  • The Second Affiliated Hospital of Xi'an Jiaotong University
  • Xi'an Jiaotong University
  • Chinese Academy of Agricultural Sciences
  • Key Laboratory for ImmunoHealth of Shanxi Province

Research output: Contribution to journalArticlepeer-review

Abstract

Infectious laryngotracheitis virus (ILTV), formally known as Gallid alphaherpesvirus 1, represents a prominent alphaherpesvirus that poses a significant threat to the global poultry industry. Current routine vaccination strategies fail to eliminate latent infection. Host–pathogen interaction networks have become a key focus in antiviral research. Our previous study demonstrated that activation of the MEK/ERK signaling pathway upon ILTV infection restricts host cellular metabolic activity to mount protective host antiviral responses, yet the underlying molecular mechanism remains unclear. The present work systematically dissects the contribution of MEK/ERK signaling to intrinsic host defense against ILTV. The results show that ILTV infection activates the MEK/ERK pathway, which in turn promotes the expression, activation, and nuclear translocation of the transcription factor Fos. As a core transcriptional regulator, Fos represses host metabolic gene expression, thereby restricting viral replication and proliferation. Integrated multi-omics analyses further demonstrate that the MEK/ERK-Fos-metabolic regulatory axis operates uniformly during infection with avian, human, and porcine alphaherpesviruses, suggesting a broadly conserved host antiviral mechanism. This consistent cross species signaling pattern points toward an evolutionarily conserved host antiviral strategy and provides potential molecular targets for the development of broad-spectrum antiviral strategies against alphaherpesviruses.

Original languageEnglish
Article number1492
JournalMicroorganisms
Volume14
Issue number7
DOIs
StatePublished - Jul 2026

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • alphaherpesvirus
  • cellular metabolic pathways
  • Fos
  • Gallid alphaherpesvirus 1
  • MEK/ERK signaling pathway
  • nuclear translocation

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