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In Vitro Tumor Cell Rechallenge For Predictive Evaluation of Chimeric Antigen Receptor T Cell Antitumor Function
Published on: February 27, 2019
CARM1-mediated hypoxanthine-enriched exosomes rewire inosine metabolism and impair CD8+ T cell antitumor function
Jilong Yin1, Zhipeng Su1, Xi Hu1
1Advanced Medical Research Institute, Shandong Provincial Third Hospital, Cheeloo College of Medicine, Shandong University, Jinan, Shandong, China.
Abstract:
Cancer cells utilize tumor-derived exosomes to suppress antitumor immunity. Herein, we identify co-activator-associated arginine methyltransferase 1 (CARM1) as a key regulator of exosome biogenesis and metabolite sorting that inhibiting CD8+ T cell-mediated antitumor responses. Genetic ablation of CARM1 in breast cancer cells impairs immunosuppressive exosome secretion, enhancing CD8+ T cell infiltration, proliferation, and effector function. Mechanistically, CARM1 dimethylates apoptosis-linked gene-2 interacting protein X (ALIX) at arginine 757, facilitating its interaction with endosomal sorting complex required transport (ESCRT) components, and promoting tetraspanin-enriched exosome biogenesis. CARM1-dependent ALIX methylation enables selective packaging hypoxanthine into exosomes through direct binding to the ALIX F676 pocket. Exosomal hypoxanthine disrupts inosine metabolism in activated CD8+ T cells, inhibiting pentose phosphate pathway, glycolysis, nucleotide synthesis, and effector cytokine production. Co-administration of CARM1 inhibitor with inosine significantly enhances tumor-infiltrating CD8+ T cell cytotoxicity, reduces PD-1+TIM-3+ exhausted CD8+ T cells, and suppresses tumor growth. These findings establish the CARM1-ALIX-hypoxanthine axis as an immunosuppressive mechanism and suggest that combining CARM1 inhibition with inosine supplementation represent a promising therapeutic strategy for breast cancer.
Insights
Co-activator-associated arginine methyltransferase 1 (CARM1) regulates exosome secretion, suppressing antitumor immunity. Inhibiting CARM1 and supplementing with inosine enhances CD8+ T cell responses, offering a promising breast cancer therapy.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Biology
Background:
- Tumor-derived exosomes suppress antitumor immunity.
- CARM1's role in exosome biogenesis and immune suppression is unclear.
Purpose of the Study:
- Identify CARM1 as a regulator of exosome-mediated immune suppression.
- Elucidate the mechanism of CARM1-driven immunosuppression.
- Evaluate therapeutic strategies targeting the CARM1 pathway.
Main Methods:
- Genetic ablation of CARM1 in breast cancer cells.
- Analysis of exosome biogenesis and cargo.
- Assessment of CD8+ T cell responses.
- In vivo studies with CARM1 inhibitors and inosine.
Main Results:
- CARM1 ablation impairs immunosuppressive exosome secretion, enhancing CD8+ T cell functions.
- CARM1 dimethylates ALIX, promoting exosome biogenesis and hypoxanthine packaging.
- Exosomal hypoxanthine inhibits CD8+ T cell metabolism and effector functions.
- Combined CARM1 inhibition and inosine treatment suppressed tumor growth and T cell exhaustion.
Conclusions:
- The CARM1-ALIX-hypoxanthine axis is a key immunosuppressive mechanism in breast cancer.
- Targeting CARM1 and modulating inosine metabolism offers a novel therapeutic strategy.
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