Auto‐inducible expression of chimeric antigen receptor T cells using the NR4A1 promoter

嵌合抗原受体 T细胞 发起人 细胞生物学 受体 细胞毒性T细胞 分子生物学 抗原 抄写(语言学) 生物 转录因子 癌症研究 化学 细胞 免疫疗法 细胞培养 T细胞受体 体外 嵌合体(遗传学) 翻译(生物学) 表型 免疫学 基因 CD28 基因表达 抗原提呈细胞 免疫系统
作者
Samuel WJ Smith‐Bell,Joshua Colin Halpin,Phillip K Darcy,Thiloma Liyanage,Lachlan J Dobson,Alexander D McLellan
出处
期刊:Immunology and Cell Biology [Wiley]
标识
DOI:10.1111/imcb.70095
摘要

Chimeric antigen receptor (CAR) T cell therapies have shown remarkable efficacy in hematological malignancies, yet translation to solid tumors has been hindered by immunosuppressive tumor microenvironments, reduced T cell persistence and on-target/off-tumor toxicities. Constitutive CAR expression, typically driven by strong promoters such as EF1α, promotes tonic signaling, receptor clustering and antigen-independent activation, contributing to T cell exhaustion and adverse events. Inducible promoter systems have been proposed to improve control over CAR expression. NR4A1, a transcription factor (TF) activated during early T cell receptor (TCR) signaling, governs pathways central to T cell activation and dysfunction, making its promoter an attractive candidate for conditional CAR regulation. We compared constitutive (EF1α), synthetic inducible (6NFAT-NFκB and 2NFAT-2NurRE) and NR4A1 promoters to drive expression of a second-generation FRP5-CAR. NR4A1-driven CARs demonstrated low basal expression that was rapidly induced upon antigen encounter, reaching levels equivalent to EF1α-driven CARs while showing minimal antigen-independent signaling. Functionally, NR4A1-driven CARs mediated potent tumor lysis, preserved a less exhausted (PD-1low and TIM-3low) and more memory-like phenotype (CD62Lhigh and CD45RAhigh), and sustained robust antitumor responses in vitro and in vivo. These findings establish the NR4A1 promoter as a native, activation-inducible system to fine-tune CAR expression, while maintaining therapeutic efficacy comparable to constitutively expressed CAR T cells. This strategy provides a promising framework for advancing CAR T cell therapies against solid tumors.
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