Human rhinovirus 16 induces an ICAM-1-PKR-ATF2 axis to modulate macrophage functions

Suzanne Faure-Dupuy1, Manon Depierre1, Zoé Fremont-Debaene1

  • 1Université Paris Cité, Institut Cochin, INSERM, CNRS, Paris, France.

Journal of Virology
|September 26, 2024
PubMed

Insights

Human rhinovirus 16 (HRV16) impairs macrophage function, hindering bacterial elimination in chronic lung diseases. This study uncovers the ICAM-1-PKR-ATF2 pathway and epigenetic changes regulating ARL5b, offering new therapeutic targets.

Area of Science:

  • Virology
  • Immunology
  • Cell Biology

Background:

  • Human rhinovirus (HRV) infections exacerbate chronic pulmonary diseases by impairing macrophage bacterial elimination.
  • ARL5b is implicated in HRV16-induced macrophage dysfunction, acting as a restriction factor in permissive cells but being repressed.
  • Understanding HRV16's dual regulation of ARL5b is crucial for developing targeted therapies.

Purpose of the Study:

  • To investigate the dual regulation of ARL5b by HRV16 in primary human macrophages and permissive cells.
  • To identify the signaling pathways and epigenetic mechanisms involved in ARL5b modulation by HRV16.
  • To explore novel therapeutic strategies targeting these pathways for respiratory conditions.

Main Methods:

  • Analysis of HRV16 effects on primary human macrophages using neutralizing antibodies, specific inhibitors, and siRNA.
  • Chromatin immune precipitation to study epigenetic modifications at the ARL5b promoter.
  • Investigation of the ICAM-1-PKR-ATF2 signaling axis and ATF2-dependent epigenetic reprogramming.

Main Results:

  • HRV16 induces interferon and pro-inflammatory responses in macrophages without replicating.
  • The ICAM-1-PKR-ATF2 axis is essential for ARL5b induction in macrophages, while only ICAM-1 is involved in repression in permissive cells.
  • HRV16 triggers ATF2-dependent epigenetic reprogramming at the ARL5b promoter in macrophages.

Conclusions:

  • HRV16 activates previously unknown signaling pathways in macrophages, including the ICAM-1-PKR-ATF2 axis.
  • Epigenetic reprogramming at the ARL5b promoter is a key mechanism of HRV16's action in macrophages.
  • Targeting these pathways offers potential for novel therapeutic strategies to improve outcomes in patients with chronic pulmonary conditions and HRV infections.