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Updated: Jan 29, 2026

Utilizing Functional Genomics Screening to Identify Potentially Novel Drug Targets in Cancer Cell Spheroid Cultures
Published on: December 26, 2016
CRISPR screens identify targets to rescue age-related T cell dysfunction in cancer
Abstract:
Immune aging is being increasingly recognized as a critical barrier to effective cancer immunotherapy, as the aged tumor microenvironment (TME) drives T cell dysfunction and impairs immune control of cancer. However, the key molecular drivers of this process as well as potential targets to rescue T cell dysfunction in aged tumors remain incompletely understood. Therefore, we performed in vivo single-cell CRISPR screens in CD8 + T cells within aged tumors and tumor-draining lymph nodes (tdLNs). We identified Dusp5 and Zfp219 as key regulators of T cell persistence and effector differentiation in aged hosts. Loss of Dusp5 , a negative regulator of ERK signaling, increased ERK1/2 phosphorylation and enhanced T cell proliferation in both young and aged tumors. In contrast, loss of Zfp219 , a transcriptional repressor, induced epigenetic reprogramming of cytotoxic gene programs, thereby increasing granzyme secretion and enhancing antitumor immunity. Moreover, expression of the human ortholog gene ZNF219 is increased within intratumoral CD8 + T cells in older cancer patients. High ZNF219 expression correlates with poorer survival following immune checkpoint blockade (ICB) and reduces persistence of human intratumoral T cells. Notably, Zfp219 ablation synergized with anti-PD-1 blockade in mice to expand effector-like CD8 + T cells, leading to significantly enhanced anti-tumor immunity and tumor clearance in aged hosts. Together, these findings highlight Dusp5 and Zfp219 as critical drivers of age-related T cell dysfunction and as potential therapeutic targets to rejuvenate T cell antitumor immunity in older cancer patients.
Insights
Immune aging impairs cancer immunotherapy. Researchers identified Dusp5 and Zfp219 as key drivers of T cell dysfunction in aged tumors, offering potential therapeutic targets to enhance anti-tumor immunity in older patients.
Area of Science:
- Immunology
- Oncology
- Aging Research
Background:
- Immune aging, or immunosenescence, hinders effective cancer immunotherapy by impairing T cell function within the tumor microenvironment (TME).
- The molecular mechanisms driving T cell dysfunction in aged tumors and potential therapeutic targets remain largely unknown.
Purpose of the Study:
- To identify key molecular regulators of T cell dysfunction in aged tumors.
- To explore potential therapeutic targets for rejuvenating anti-tumor immunity in elderly cancer patients.
Main Methods:
- In vivo single-cell CRISPR screens were conducted in CD8+ T cells from aged tumor-bearing mice and tumor-draining lymph nodes (tdLNs).
- Functional assays assessed the impact of gene perturbations on T cell persistence, effector differentiation, and anti-tumor responses.
Main Results:
- Dusp5 and Zfp219 were identified as critical regulators of T cell function in aged hosts.
- Loss of Dusp5 enhanced T cell proliferation by modulating ERK signaling.
- Loss of Zfp219 promoted epigenetic reprogramming of cytotoxic genes, boosting granzyme secretion and anti-tumor immunity.
- Human ZNF219 expression is elevated in older cancer patients' intratumoral T cells, correlating with poorer outcomes after immune checkpoint blockade (ICB).
- Zfp219 ablation synergized with anti-PD-1 blockade to enhance anti-tumor immunity and tumor clearance in aged mice.
Conclusions:
- Dusp5 and Zfp219 are critical drivers of age-related T cell dysfunction in cancer.
- Targeting Dusp5 and Zfp219 may represent a novel strategy to rejuvenate T cell-mediated anti-tumor immunity in elderly cancer patients.
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