Targeting HVEM-GPT2 axis: a novel approach to T cell activation and metabolic reprogramming in non-small cell lung

Yuanshan Yao1, Chunji Chen1,2, Bin Li2

  • 1Department of Thoracic Surgery, HuaDong hospital affiliated to Fudan University, Shanghai, China.

Abstract

Insights

This study reveals that the HVEM-GPT2 axis is crucial for T cell function in non-small cell lung cancer (NSCLC), offering a new therapeutic target. Targeting HVEM can enhance T cell activity and improve NSCLC treatment outcomes.

Area of Science:

  • Immunology
  • Oncology
  • Molecular Biology

Background:

  • Immune checkpoint pathways are key targets for cancer immunotherapy.
  • The tumor microenvironment significantly impacts treatment efficacy.
  • Understanding novel targets like HVEM in NSCLC is critical.

Purpose of the Study:

  • To investigate the role of Herpesvirus entry mediator (HVEM) in the non-small cell lung cancer (NSCLC) microenvironment.
  • To explore HVEM's impact on T cell functionality and NSCLC progression.
  • To identify potential therapeutic targets within the HVEM pathway.

Main Methods:

  • Analysis of TCGA and TISCH datasets for HVEM expression.
  • Multiplex immunohistochemistry (mIHC) for spatial analysis.
  • In vitro co-culture systems and in vivo mouse models.
  • Gene expression (qPCR), protein analysis (Western blotting), and metabolic assays (OCR).
  • RNA-seq, COIP, Dual-luciferase reporter, and CHIP-seq for mechanistic studies.

Main Results:

  • HVEM expression correlates with immune dysfunction in NSCLC patients.
  • HVEM is primarily expressed in T cell subpopulations (CD8+ and CD4+), with higher levels indicating better prognosis.
  • Activated T cells, influenced by HVEM, inhibit NSCLC proliferation and invasion.
  • HVEM is essential for T cell survival, activation, and metabolic reprogramming (glycolysis).
  • The HVEM-GPT2 axis mediates T cell activation and metabolism, with GATA1 regulating HVEM expression.

Conclusions:

  • HVEM plays a significant role in modulating T cell functionality within the NSCLC microenvironment.
  • The HVEM-GPT2 axis represents a promising therapeutic target for enhancing cancer immunotherapy in NSCLC.
  • Targeting HVEM could improve T cell responses and patient outcomes in NSCLC.

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