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Updated: Jul 24, 2025

Analysis of Human T Cell Activity in an Allogeneic Co-Culture Setting of Pre-Treated Tumor Cells
Published on: March 7, 2025
SLC38A2 and glutamine signalling in cDC1s dictate anti-tumour immunity
Chuansheng Guo1, Zhiyuan You1, Hao Shi1
1Department of Immunology, St. Jude Children's Research Hospital, Memphis, TN, USA.
Abstract:
Cancer cells evade T cell-mediated killing through tumour-immune interactions whose mechanisms are not well understood1,2. Dendritic cells (DCs), especially type-1 conventional DCs (cDC1s), mediate T cell priming and therapeutic efficacy against tumours3. DC functions are orchestrated by pattern recognition receptors3-5, although other signals involved remain incompletely defined. Nutrients are emerging mediators of adaptive immunity6-8, but whether nutrients affect DC function or communication between innate and adaptive immune cells is largely unresolved. Here we establish glutamine as an intercellular metabolic checkpoint that dictates tumour-cDC1 crosstalk and licenses cDC1 function in activating cytotoxic T cells. Intratumoral glutamine supplementation inhibits tumour growth by augmenting cDC1-mediated CD8+ T cell immunity, and overcomes therapeutic resistance to checkpoint blockade and T cell-mediated immunotherapies. Mechanistically, tumour cells and cDC1s compete for glutamine uptake via the transporter SLC38A2 to tune anti-tumour immunity. Nutrient screening and integrative analyses show that glutamine is the dominant amino acid in promoting cDC1 function. Further, glutamine signalling via FLCN impinges on TFEB function. Loss of FLCN in DCs selectively impairs cDC1 function in vivo in a TFEB-dependent manner and phenocopies SLC38A2 deficiency by eliminating the anti-tumour therapeutic effect of glutamine supplementation. Our findings establish glutamine-mediated intercellular metabolic crosstalk between tumour cells and cDC1s that underpins tumour immune evasion, and reveal glutamine acquisition and signalling in cDC1s as limiting events for DC activation and putative targets for cancer treatment.
Insights
Glutamine acts as a metabolic checkpoint, controlling communication between tumor cells and dendritic cells (DCs). Supplementing glutamine enhances anti-tumor immunity by improving DC function and overcoming treatment resistance.
Area of Science:
- Immunology
- Metabolic pathways
- Cancer research
Background:
- Tumor cells evade immune responses, partly through poorly understood tumor-immune interactions.
- Dendritic cells (DCs), particularly cDC1s, are crucial for initiating anti-tumor T cell responses.
- Nutrient roles in adaptive immunity and DC function remain largely undefined.
Purpose of the Study:
- To investigate the role of nutrients, specifically glutamine, in regulating DC function and anti-tumor immunity.
- To elucidate the mechanisms by which glutamine influences the crosstalk between tumor cells and cDC1s.
- To explore glutamine supplementation as a therapeutic strategy against cancer immune evasion.
Main Methods:
- Nutrient screening and integrative analyses to identify key nutrients affecting DC function.
- Investigating glutamine uptake via SLC38A2 transporter in tumor cells and cDC1s.
- Analyzing glutamine signaling pathways involving FLCN and TFEB in DCs.
Main Results:
- Glutamine serves as an intercellular metabolic checkpoint, dictating tumor-cDC1 crosstalk and enhancing cDC1-mediated T cell activation.
- Intratumoral glutamine supplementation inhibits tumor growth and overcomes resistance to immunotherapies.
- Tumor cells and cDC1s compete for glutamine; glutamine is the dominant amino acid promoting cDC1 function.
- Glutamine signaling via FLCN impacts TFEB function, and FLCN deficiency in DCs impairs cDC1 function.
Conclusions:
- Glutamine-mediated metabolic crosstalk between tumor cells and cDC1s is critical for tumor immune evasion.
- Glutamine acquisition and signaling in cDC1s are limiting factors for DC activation.
- Targeting glutamine metabolism in cDC1s presents a potential therapeutic strategy for enhancing anti-tumor immunity.
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