Natural killer T cells (NKTs) are a promising platform for cancer immunotherapy, but few genes involved in the regulation of NKT therapeutic activity have been identified. To find regulators of NKT functional fitness, we developed a CRISPR/Cas9-based mutagenesis screen that uses a guide RNA (gRNA) library targeting 1,118 immune-related genes. Unmodified NKTs and NKTs expressing a GD2-specific chimeric antigen receptor (GD2.CAR) were transduced with the gRNA library and exposed to CD1d+ leukemia or CD1d-GD2+ neuroblastoma cells, respectively, over six challenge cycles in vitro. Quantification of gRNA abundance revealed enrichment of PRDM1-specific gRNAs in both NKTs and GD2.CAR NKTs, a result that was validated through targeted PRDM1 knockout. Transcriptional, phenotypic, and functional analyses demonstrated that CAR NKTs with PRDM1 knockout underwent central memory-like differentiation and resisted exhaustion. However, these cells downregulated the cytotoxic mediator granzyme B and showed reduced in vitro cytotoxicity and only moderate in vivo antitumor activity in a xenogeneic neuroblastoma model. In contrast, short hairpin RNA-mediated PRDM1 knockdown preserved effector function while promoting central memory differentiation, resulting in GD2.CAR NKTs with potent in vivo antitumor activity. Thus, we have identified PRDM1 as a regulator of NKT memory differentiation and effector function that can be exploited to improve the efficacy of NKT-based cancer immunotherapies.
PRDM1 Is a Key Regulator of the NKT-cell Central Memory Program and Effector Function.
PRDM1 是 NKT 细胞中央记忆程序和效应功能的关键调节因子
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作者:Tian Gengwen, Barragan Gabriel A, Yu Hangjin, Martinez-Amador Claudia, Adaikkalavan Akshaya, Rios Xavier, Guo Linjie, Drabek Janice M, Pardias Osmay, Xu Xin, Montalbano Antonino, Zhang Chunchao, Li Yanchuan, Courtney Amy N, Di Pierro Erica J, Metelitsa Leonid S
| 期刊: | Cancer Immunology Research | 影响因子: | 8.200 |
| 时间: | 2025 | 起止号: | 2025 Apr 2; 13(4):577-590 |
| doi: | 10.1158/2326-6066.CIR-24-0259 | 研究方向: | 细胞生物学 |
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