清脆的
生物
自然(考古学)
计算生物学
小学(天文学)
原电池
自然杀伤细胞
免疫系统
基因组编辑
遗传学
HEK 293细胞
免疫学
人类疾病
人类健康
人细胞
病毒学
作者
Quoc V. Nguyen,Yi-Jun Lan,Jason Cheng-Yu Chang,Hsin-An Shih,Jenifer Faustine,Cheng-Chieh Chen,Shu-Yu Ho,Ching-Wen Cheng,Tsu-Lan Chao,Steven Lin
标识
DOI:10.1038/s41467-026-71895-x
摘要
Natural killer (NK) cells are promising effectors for cancer immunotherapy, but their efficacy is limited by immunosuppressive tumor microenvironments. To uncover strategies for enhancing NK cell function, we establish a CRISPR loss-of-function screening platform for primary human NK cells by combining BaEVRless-pseudotyped lentiviral transduction of sgRNA libraries with Cas9 protein electroporation. This platform enables genome-scale interrogation of gene function in non-transformed NK cells. Kinome-focused and genome-wide screens identify key regulators of NK cell proliferation, cytotoxicity, and resistance to prostaglandin E2 (PGE2)-mediated suppression. STK17B deletion enhances NK cell expansion, while loss of CCDC53 boosts degranulation and cytotoxicity. We also uncover the CRL5 complex-including RNF7, UBE2F, and CISH-as critical inhibitors of IL-2 signaling and effector function under PGE2 stress. These findings establish a scalable platform for CRISPR-based functional genomics in primary NK cells and reveal engineering targets to enhance NK cell persistence and efficacy in tumor microenvironments.
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