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CARM1 Inhibition Enables Immunotherapy of Resistant Tumors by Dual Action on Tumor Cells and T Cells
Sushil Kumar1,2, Zexian Zeng3, Archis Bagati1,2
1Department of Cancer Immunology and Virology, Dana-Farber Cancer Institute, Boston, Massachusetts.
Abstract:
A number of cancer drugs activate innate immune pathways in tumor cells but unfortunately also compromise antitumor immune function. We discovered that inhibition of CARM1, an epigenetic enzyme and cotranscriptional activator, elicited beneficial antitumor activity in both cytotoxic T cells and tumor cells. In T cells, Carm1 inactivation substantially enhanced their antitumor function and preserved memory-like populations required for sustained antitumor immunity. In tumor cells, Carm1 inactivation induced a potent type 1 interferon response that sensitized resistant tumors to cytotoxic T cells. Substantially increased numbers of dendritic cells, CD8 T cells, and natural killer cells were present in Carm1-deficient tumors, and infiltrating CD8 T cells expressed low levels of exhaustion markers. Targeting of CARM1 with a small molecule elicited potent antitumor immunity and sensitized resistant tumors to checkpoint blockade. Targeting of this cotranscriptional regulator thus offers an opportunity to enhance immune function while simultaneously sensitizing resistant tumor cells to immune attack. SIGNIFICANCE: Resistance to cancer immunotherapy remains a major challenge. Targeting of CARM1 enables immunotherapy of resistant tumors by enhancing T-cell functionality and preserving memory-like T-cell populations within tumors. CARM1 inhibition also sensitizes resistant tumor cells to immune attack by inducing a tumor cell-intrinsic type 1 interferon response.This article is highlighted in the In This Issue feature, p. 1861.
Insights
Inhibiting CARM1, an epigenetic enzyme, boosts anti-tumor immunity by enhancing T-cell function and making tumors more responsive to immune attack. This approach offers a new strategy for overcoming resistance to cancer immunotherapy.
Area of Science:
- Immunology
- Epigenetics
- Cancer Biology
Background:
- Cancer drugs can activate innate immunity but also impair anti-tumor immune responses.
- Resistance to cancer immunotherapy is a significant clinical challenge.
Purpose of the Study:
- To investigate the role of CARM1 (a cotranscriptional activator) in anti-tumor immunity.
- To determine if targeting CARM1 can overcome immunotherapy resistance.
Main Methods:
- Studied the effects of CARM1 inactivation in cytotoxic T cells and tumor cells.
- Utilized a small molecule inhibitor of CARM1.
- Analyzed immune cell infiltration and T-cell exhaustion markers in tumors.
Main Results:
- CARM1 inactivation enhanced T-cell anti-tumor function and preserved memory-like T cells.
- CARM1 inhibition in tumor cells induced a type 1 interferon response, sensitizing them to T cells.
- CARM1-deficient tumors showed increased infiltration of immune cells (dendritic cells, CD8 T cells, NK cells) with reduced T-cell exhaustion.
Conclusions:
- Targeting CARM1 enhances anti-tumor immunity by improving T-cell function and sensitizing resistant tumors to immune attack.
- CARM1 inhibition represents a promising strategy to overcome resistance in cancer immunotherapy.
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