限制
基因
生物
刺激
细胞
效应器
细胞生物学
细胞生长
遗传学
神经科学
机械工程
工程类
作者
Chun‐Pu Lin,Pierre Lévy,Astrid Alflen,Georgi Apriamashvili,Maarten A. Ligtenberg,David W. Vredevoogd,Onno B. Bleijerveld,Ferhat Alkan,Yuval Malka,Liesbeth Hoekman,Ettai Markovits,Austin George,Joleen J.H. Traets,Oscar Krijgsman,Alex van Vliet,Joanna Poźniak,Carlos Ariel Pulido-Vicuña,Beaunelle de Bruijn,Susan E. van Hal-van Veen,Julia Boshuizen
出处
期刊:Cancer Cell
[Cell Press]
日期:2024-03-14
卷期号:42 (4): 623-645.e10
被引量:5
标识
DOI:10.1016/j.ccell.2024.02.016
摘要
Genes limiting T cell antitumor activity may serve as therapeutic targets. It has not been systematically studied whether there are regulators that uniquely or broadly contribute to T cell fitness. We perform genome-scale CRISPR-Cas9 knockout screens in primary CD8 T cells to uncover genes negatively impacting fitness upon three modes of stimulation: (1) intense, triggering activation-induced cell death (AICD); (2) acute, triggering expansion; (3) chronic, causing dysfunction. Besides established regulators, we uncover genes controlling T cell fitness either specifically or commonly upon differential stimulation. Dap5 ablation, ranking highly in all three screens, increases translation while enhancing tumor killing. Loss of Icam1-mediated homotypic T cell clustering amplifies cell expansion and effector functions after both acute and intense stimulation. Lastly, Ctbp1 inactivation induces functional T cell persistence exclusively upon chronic stimulation. Our results functionally annotate fitness regulators based on their unique or shared contribution to traits limiting T cell antitumor activity.
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