Disruption of SUV39H1-Mediated H3K9 Methylation Sustains CAR T-cell Function

Author:

Jain Nayan12ORCID,Zhao Zeguo2ORCID,Koche Richard P.3ORCID,Antelope Chenling4ORCID,Gozlan Yosi4ORCID,Montalbano Antonino4ORCID,Brocks David4ORCID,Lopez Michael2ORCID,Dobrin Anton12ORCID,Shi Yuzhe2ORCID,Gunset Gertrude2ORCID,Giavridis Theodoros5ORCID,Sadelain Michel2ORCID

Affiliation:

1. 1Louis V. Gerstner Jr. Graduate School of Biomedical Sciences, Memorial Sloan Kettering Cancer Center, New York, New York.

2. 2Center for Cell Engineering and Immunology Program, Memorial Sloan Kettering Cancer Center, New York, New York.

3. 3Center for Epigenetics Research, Memorial Sloan Kettering Cancer Center, New York, New York.

4. 4Immunai, New York, New York.

5. 5Mnemo Therapeutics, New York, New York.

Abstract

Abstract Suboptimal functional persistence limits the efficacy of adoptive T-cell therapies. CD28-based chimeric antigen receptors (CAR) impart potent effector function to T cells but with a limited lifespan. We show here that the genetic disruption of SUV39H1, which encodes a histone-3, lysine-9 methyl-transferase, enhances the early expansion, long-term persistence, and overall antitumor efficacy of human CAR T cells in leukemia and prostate cancer models. Persisting SUV39H1-edited CAR T cells demonstrate improved expansion and tumor rejection upon multiple rechallenges. Transcriptional and genome accessibility profiling of repeatedly challenged CAR T cells shows improved expression and accessibility of memory transcription factors in SUV39H1-edited CAR T cells. SUV39H1 editing also reduces expression of inhibitory receptors and limits exhaustion in CAR T cells that have undergone multiple rechallenges. Our findings thus demonstrate the potential of epigenetic programming of CAR T cells to balance their function and persistence for improved adoptive cell therapies. Significance: T cells engineered with CD28-based CARs possess robust effector function and antigen sensitivity but are hampered by limited persistence, which may result in tumor relapse. We report an epigenetic strategy involving disruption of the SUV39H1-mediated histone-silencing program that promotes the functional persistence of CD28-based CAR T cells. See related article by López-Cobo et al., p. 120. This article is featured in Selected Articles from This Issue, p. 5

Funder

National Cancer Institute

Publisher

American Association for Cancer Research (AACR)

Subject

Oncology

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