Related Experiment Video
Updated: Aug 5, 2026

In Vitro Assay to Evaluate the Impact of Immunoregulatory Pathways on HIV-specific CD4 T Cell Effector Function
Published on: October 15, 2013
Interferon-Associated Antiviral Programs Define LAG-3+ Exhaustion-Like CD8+ T-Cell Remodeling in Influenza a Virus
Yecheng Zhou1, Jianing Wang2, Jingyan Xu1
1Department of Pediatrics, People's Hospital of Nanhai Economic Development Zone, Foshan, China.
Background:
Influenza A virus (IAV) infection induces complex antiviral immune responses, yet how innate sensing, host genetic susceptibility, and adaptive immune dysfunction converge remains incompletely understood. This study investigated peripheral immune remodeling during IAV infection, focusing on LAG-3-expressing CD8+ T cells and their transcriptional and genetic signatures.
Methods:
Single-cell and bulk transcriptomics, genetic analyses, Mendelian randomization, network modeling, and machine learning were integrated. Flow cytometry was used to validate LAG-3 expression and CD8+ T-cell dysfunction in healthy controls and children with IAV infection.
Results:
IAV infection caused marked immune remodeling and expansion of LAG-3+ exhaustion-like CD8+ T cells spanning naïve, effector, and exhaustion-associated states. Interferon-stimulated genes dominated differential expression, co-expression modules, and pathway enrichment. Ten influenza-exhaustion signature genes were identified, with Mendelian randomization prioritizing IFI44, IFIT3, MX2, ZBP1, IFIT1, and HES4 as genetically associated with IAV susceptibility. Gene-based classifiers achieved AUCs up to 0.886 across three independent cohorts. Flow cytometry confirmed increased LAG-3 expression and reduced CD107a activity in pediatric IAV infection.
Conclusions:
IAV infection is characterized by an interferon-dominated program and expansion of dysfunctional LAG-3+ CD8+ T cells, highlighting candidate biomarkers for immune remodeling.
Related Concept Videos
Inhibitors of Viral Protein Synthesis
Immune Response Against Viral Pathogens
NK Cells
NK cells are a crucial part of our innate immune system, acting as the first line of defense against viral infections. These cells can recognize and kill infected cells without prior exposure to the virus, effectively slowing down the spread of infection. Additionally, NK cells produce proinflammatory...

