生物
嵌合抗原受体
清脆的
免疫疗法
基因组编辑
计算生物学
转录组
遗传学
基因
免疫系统
基因表达
作者
Theodore L. Roth,P. Jonathan Li,Franziska Blaeschke,Jasper F. Nies,Ryan Apathy,Cody T. Mowery,Ruby Yu,Michelle Nguyen,Youjin Lee,Anna Truong,Joseph Hiatt,David Wu,David N. Nguyen,Daniel B. Goodman,Jeffrey A. Bluestone,Chun Jimmie Ye,Kole T. Roybal,Eric Shifrut,Alexander Marson
出处
期刊:Cell
[Cell Press]
日期:2020-04-01
卷期号:181 (3): 728-744.e21
被引量:130
标识
DOI:10.1016/j.cell.2020.03.039
摘要
Adoptive transfer of genetically modified immune cells holds great promise for cancer immunotherapy. CRISPR knockin targeting can improve cell therapies, but more high-throughput methods are needed to test which knockin gene constructs most potently enhance primary cell functions in vivo. We developed a widely adaptable technology to barcode and track targeted integrations of large non-viral DNA templates and applied it to perform pooled knockin screens in primary human T cells. Pooled knockin of dozens of unique barcoded templates into the T cell receptor (TCR)-locus revealed gene constructs that enhanced fitness in vitro and in vivo. We further developed pooled knockin sequencing (PoKI-seq), combining single-cell transcriptome analysis and pooled knockin screening to measure cell abundance and cell state ex vivo and in vivo. This platform nominated a novel transforming growth factor β (TGF-β) R2-41BB chimeric receptor that improved solid tumor clearance. Pooled knockin screening enables parallelized re-writing of endogenous genetic sequences to accelerate discovery of knockin programs for cell therapies.
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