Accelerating tumor evolution and enhancing immunotherapy efficacy in lung adenocarcinoma based on EXO1 inhibition

Xianfei Zhang1, Liangjiao Yao2, Zhengxin Yin1

  • 1Department of Thoracic Surgery, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Abstract

Insights

Exonuclease 1 (EXO1) deficiency in lung cancer promotes tumor immunity and enhances response to checkpoint inhibitors by altering DNA repair pathways. This suggests EXO1 abrogation as a novel immunotherapy strategy.

Area of Science:

  • Oncology
  • Immunology
  • Genetics

Background:

  • DNA damage repair defects influence tumor immunogenicity and immunotherapy response.
  • The role of Exonuclease 1 (EXO1) in lung adenocarcinoma (LUAD) immunogenomics and immunotherapy is not well understood.

Purpose of the Study:

  • To investigate the role of EXO1 in LUAD immunogenomic regulation.
  • To assess the impact of EXO1 on response to immune checkpoint inhibitors.

Main Methods:

  • Integrated multi-omics analysis of LUAD cohorts (TCGA).
  • Functional studies in syngeneic murine models with Exo1 ablation.
  • Assessment of DNA repair kinetics, mutation burden, tumor evolution, and immune cell infiltration.
  • Evaluation of anti-PD-1 therapy response in Exo1-deficient tumors.

Main Results:

  • EXO1 overexpression correlates with genomic instability and poor LUAD prognosis.
  • Exo1 ablation in mice created "controlled genomic chaos," increasing mutation burden and tumor evolution.
  • Exo1 deficiency enhanced cytotoxic CD8+ T cell infiltration and led to a 100% response rate to anti-PD-1 therapy.
  • Exo1 suppression promoted non-homologous end joining-driven immunoediting.

Conclusions:

  • DNA damage repair kinetics govern immune crosstalk.
  • EXO1 abrogation is a potential strategy to overcome immune checkpoint inhibitor resistance in LUAD.

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