Quantitative Proteomics of Tissue-Infiltrating T Cells From CRC Patients Identified Lipocalin-2 Induces T-Cell Apoptosis and Promotes Tumor Cell Proliferation by Iron Efflux

Mol Cell Proteomics. 2024 Jan;23(1):100691. doi: 10.1016/j.mcpro.2023.100691. Epub 2023 Dec 10.

Abstract

T cells play the most pivotal roles in antitumor immunity; the T-cell proteome and the differentially expressed proteins in the tumor immune microenvironment have rarely been identified directly from the clinical samples, especially for tumors that lack effective immunotherapy targets, such as colorectal cancer (CRC). In this study, we analyzed the protein expression pattern of the infiltrating T cells isolated from CRC patients using quantitative proteomics. CD4+ and CD8+ T cells were isolated from clinical samples and labeled by tandem mass tag reagents, and the differentially expressed proteins were quantified by mass spectrometry. The T-cell proteome profiling revealed dysfunctions in these tumor-infiltrating T cells. Specifically, antitumor immunity was suppressed because of differentially expressed metal ion transporters and immunity regulators. For the first time, lipocalin-2 (LCN2) was shown to be significantly upregulated in CD4+ T cells. Quantitative proteomic analysis of LCN2-overexpressed Jurkat cells showed that LCN2 damaged T cells by changes in iron transport. LCN2 induced T-cell apoptosis by reducing cellular iron concentration; moreover, the iron that was transported to the tumor microenvironment aided tumor cell proliferation, promoting tumor development. Meanwhile, LCN2 also influenced tumor progression through immune cytokines and cholesterol metabolism. Our results demonstrated that LCN2 has immunosuppressive functions that can promote tumor development; therefore, it is a potential immunotherapy target for CRC.

Keywords: antitumor immunity; colorectal cancer; iron transport; lipocalin-2; tumor-infiltrating T cells.

MeSH terms

  • Apoptosis
  • CD8-Positive T-Lymphocytes* / metabolism
  • Cell Proliferation
  • Humans
  • Iron / metabolism
  • Lipocalin-2 / metabolism
  • Neoplasms*
  • Proteome / metabolism
  • Proteomics
  • Tumor Microenvironment

Substances

  • Iron
  • Lipocalin-2
  • Proteome
  • LCN2 protein, human