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March 28, 2026Cancer Research1 citations

Enhancing Proteasome Activity in T Cells Alleviates Exhaustion and Improves Antitumor Immunity

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ABAnder de BlasMAMassimo AndreattaAAAsier Antoñana-Vildosola

Key Points

  • The research aims to investigate the role of proteasome activity in alleviating T cell exhaustion and improving antitumor immunity.
  • Conducted single-cell transcriptomics analysis across 16 tumor types to assess proteasome gene expression.
  • Developed an in vitro model for generating human exhausted T cells (TEX).
  • Enhanced proteasome activity pharmacologically and genetically to evaluate effects on T cell fitness.
  • Increased proteasome gene expression was observed in exhausted T cells compared to non-exhausted T cells.
  • Enhanced proteasome activity delayed the onset of T cell exhaustion and improved overall T cell fitness.
  • Improved T cell fitness translated into enhanced antitumor immunity and better tumor control.

Abstract

Abstract Chronic T cell receptor (TCR) stimulation combined with adverse conditions in the tumor microenvironment (TME), such as hypoxia and nutrient deprivation, frequently results in T cell exhaustion. Exhausted T cells (TEX) experience oxidative stress, which causes an accumulation of oxidized proteins within the cells. We hypothesized that oxidized protein formation might exceed proteasomal degradation capacity, leading to their accumulation and impairing T cell fitness. Single-cell transcriptomics analysis across 16 tumor types revealed increased expression of proteasome genes in TEX compared to non-exhausted T cells. In a robust in vitro model for the generation of human TEX, the cells exhibited hallmarks of exhaustion, with higher levels of reactive oxygen species (ROS)-induced protein oxidation and increased expression of proteasome genes. Pharmacological and genetic enhancement of proteasome activity delayed the onset of T cell exhaustion, improved T cell fitness, and translated into superior antitumor immunity and tumor control. These findings identify proteasome modulation as a promising strategy to counteract TME-driven T cell dysfunction, potentially overcoming a major obstacle to the efficacy of cell-based immunotherapies in solid tumors.

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Cite This Study

Blas et al. (2026) studied this question.

synapsesocial.com/papers/69c770f78bbfbc51511e0e00https://doi.org/10.1158/0008-5472.can-25-1246
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