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Updated: Jun 13, 2025

Atomic Absorbance Spectroscopy to Measure Intracellular Zinc Pools in Mammalian Cells
Published on: May 16, 2019
Intracellular zinc protects tumours from T cell-mediated cytotoxicity
Emily J Lelliott1,2,3, Jonathan Naddaf4,5, Katherine Ganio6
1Cancer Research Division, Peter MacCallum Cancer Centre, Melbourne, VIC, 3000, Australia. Emily.lelliott@onjcri.org.au.
Abstract:
Tumour immune evasion presents a significant challenge to the effectiveness of cancer immunotherapies. Recent advances in high-throughput screening techniques have uncovered that loss of antigen presentation and cytokine signalling pathways are central mechanisms by which tumours evade T cell immunity. To uncover additional vulnerabilities in tumour cells beyond the well-recognized antigen presentation pathway, we conducted a genome-wide CRISPR/Cas9 screen to identify genes that mediate resistance to chimeric-antigen receptor (CAR)-T cells, which function independently of classical antigen presentation. Our study revealed that loss of core-binding factor subunit beta (CBFβ) enhances tumour cell resistance to T cell killing, mediated through T cell-derived TNF. Mechanistically, RNA-sequencing and elemental analyses revealed that deletion of CBFβ disrupts numerous pathways including those involved in zinc homoeostasis. Moreover, we demonstrated that modulation of cellular zinc, achieved by supplementation or chelation, significantly altered tumour cell susceptibility to TNF by regulating the levels of inhibitor of apoptosis proteins. Consistent with this, treatment of tumour cells with a membrane-permeable zinc chelator had no impact on tumour cell viability alone, but significantly increased tumour cell lysis by CD8+ T cells in a TNF-dependent but perforin-independent manner. These results underscore the crucial role of intracellular zinc in regulating tumour cell susceptibility to T cell-mediated killing, revealing a novel vulnerability in tumour cells that might be exploited for the development of future cancer immunotherapeutics.
Insights
Tumour cells evade immune attack by losing core-binding factor subunit beta (CBFβ), disrupting zinc homeostasis. Zinc chelation sensitizes cancer cells to T cell killing, offering a new immunotherapy target.
Area of Science:
- Cancer Immunology
- Cellular Biology
- Molecular Oncology
Background:
- Tumour immune evasion hinders cancer immunotherapy efficacy.
- Loss of antigen presentation and cytokine pathways are known evasion mechanisms.
- Novel vulnerabilities beyond antigen presentation are needed.
Purpose of the Study:
- Identify genes conferring resistance to chimeric antigen receptor (CAR)-T cells, independent of antigen presentation.
- Investigate the role of core-binding factor subunit beta (CBFβ) in tumour immune evasion.
- Explore the therapeutic potential of modulating intracellular zinc levels.
Main Methods:
- Genome-wide CRISPR/Cas9 screening to identify resistance genes.
- RNA-sequencing and elemental analysis to understand CBFβ function.
- In vitro studies modulating cellular zinc levels and T cell-mediated killing.
Main Results:
- Loss of CBFβ confers resistance to CAR-T cell killing via TNF.
- CBFβ deletion disrupts zinc homeostasis and related pathways.
- Modulating cellular zinc affects tumour cell susceptibility to TNF by regulating inhibitor of apoptosis proteins.
- Zinc chelation enhances CD8+ T cell-mediated tumour cell lysis in a TNF-dependent manner.
Conclusions:
- Intracellular zinc is critical for regulating tumour cell susceptibility to T cell-mediated killing.
- CBFβ disruption of zinc homeostasis represents a novel tumour vulnerability.
- Targeting intracellular zinc may enhance cancer immunotherapy outcomes.
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