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Published on: August 4, 2011
Cystine-glutamate antiporter xCT deficiency suppresses tumor growth while preserving antitumor immunity
Michael D Arensman1, Xiaoran S Yang1, Danielle M Leahy1
1Oncology Research & Development, Pfizer, Pearl River, NY 10965.
Abstract:
T cell-invigorating cancer immunotherapies have near-curative potential. However, their clinical benefit is currently limited, as only a fraction of patients respond, suggesting that these regimens may benefit from combination with tumor-targeting treatments. As oncogenic progression is accompanied by alterations in metabolic pathways, tumors often become heavily reliant on antioxidant machinery and may be susceptible to increases in oxidative stress. The cystine-glutamate antiporter xCT is frequently overexpressed in cancer and fuels the production of the antioxidant glutathione; thus, tumors prone to redox stress may be selectively vulnerable to xCT disruption. However, systemic inhibition of xCT may compromise antitumor immunity, as xCT is implicated in supporting antigen-induced T cell proliferation. Therefore, we utilized immune-competent murine tumor models to investigate whether cancer cell expression of xCT was required for tumor growth in vivo and if deletion of host xCT impacted antitumor immune responses. Deletion of xCT in tumor cells led to defective cystine uptake, accumulation of reactive oxygen species, and impaired tumor growth, supporting a cancer cell-autonomous role for xCT. In contrast, we observed that, although T cell proliferation in culture was exquisitely dependent on xCT expression, xCT was dispensable for T cell proliferation in vivo and for the generation of primary and memory immune responses to tumors. These findings prompted the combination of tumor cell xCT deletion with the immunotherapeutic agent anti-CTLA-4, which dramatically increased the frequency and durability of antitumor responses. Together, these results identify a metabolic vulnerability specific to tumors and demonstrate that xCT disruption can expand the efficacy of anticancer immunotherapies.
Insights
Targeting the cystine-glutamate antiporter xCT in cancer cells impairs tumor growth. Disrupting xCT enhances anti-CTLA-4 immunotherapy efficacy without harming T cell immune responses in vivo.
Area of Science:
- Oncology
- Cancer Metabolism
- Immunotherapy
Background:
- Cancer immunotherapies show promise but have limited efficacy in many patients.
- Tumors often rely on antioxidant systems, like the cystine-glutamate antiporter xCT, making them vulnerable to oxidative stress.
- Systemic xCT inhibition could impair anti-tumor immunity by affecting T cell proliferation.
Purpose of the Study:
- To investigate the role of cancer cell xCT in tumor growth.
- To determine if host xCT deletion affects anti-tumor immune responses.
- To evaluate combining tumor-specific xCT deletion with anti-CTLA-4 immunotherapy.
Main Methods:
- Utilized immune-competent murine tumor models.
- Deleted xCT in tumor cells and/or host.
- Administered anti-CTLA-4 immunotherapy.
Main Results:
- Tumor cell xCT deletion impaired cystine uptake, increased reactive oxygen species, and inhibited tumor growth.
- Host xCT was dispensable for T cell proliferation in vivo and anti-tumor immune responses.
- Combining tumor cell xCT deletion with anti-CTLA-4 immunotherapy significantly enhanced anti-tumor responses.
Conclusions:
- Cancer cell xCT expression is crucial for tumor growth, representing a tumor-specific metabolic vulnerability.
- Targeting xCT in tumors can enhance the effectiveness of cancer immunotherapies like anti-CTLA-4.
- Host xCT is not essential for anti-tumor immunity, allowing for therapeutic targeting of tumor xCT.
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