TOX is a critical regulator of tumour-specific T cell differentiation

NFAT公司 生物 细胞生物学 效应器 ZAP70型 细胞毒性T细胞 白细胞介素2受体 转录因子 异位表达 CD8型 白细胞介素21 T细胞 调节器 免疫学 染色质 受体 细胞分化 T细胞受体 抗原提呈细胞 转录调控 细胞 基因表达调控 分子生物学 下调和上调 转染 刺激 TCIRG1公司 Jurkat细胞
作者
Andrew Scott,Friederike Dündar,Paul Zumbo,Smita S. Chandran,Christopher A. Klebanoff,Mojdeh Shakiba,Prerak Trivedi,Laura Menocal,Heather Appleby,Steven Camara,Dmitriy Zamarin,Tyler Walther,Alexandra Snyder,Matthew R. Femia,Elizabeth Comen,Hannah Y. Wen,Matthew D. Hellmann,Niroshana Anandasabapathy,Yong Liu,Nasser K. Altorki
出处
期刊:Nature [Springer Nature]
卷期号:571 (7764): 270-274 被引量:1014
标识
DOI:10.1038/s41586-019-1324-y
摘要

Tumour-specific CD8 T cell dysfunction is a differentiation state that is distinct from the functional effector or memory T cell states1-6. Here we identify the nuclear factor TOX as a crucial regulator of the differentiation of tumour-specific T (TST) cells. We show that TOX is highly expressed in dysfunctional TST cells from tumours and in exhausted T cells during chronic viral infection. Expression of TOX is driven by chronic T cell receptor stimulation and NFAT activation. Ectopic expression of TOX in effector T cells in vitro induced a transcriptional program associated with T cell exhaustion. Conversely, deletion of Tox in TST cells in tumours abrogated the exhaustion program: Tox-deleted TST cells did not upregulate genes for inhibitory receptors (such as Pdcd1, Entpd1, Havcr2, Cd244 and Tigit), the chromatin of which remained largely inaccessible, and retained high expression of transcription factors such as TCF-1. Despite their normal, 'non-exhausted' immunophenotype, Tox-deleted TST cells remained dysfunctional, which suggests that the regulation of expression of inhibitory receptors is uncoupled from the loss of effector function. Notably, although Tox-deleted CD8 T cells differentiated normally to effector and memory states in response to acute infection, Tox-deleted TST cells failed to persist in tumours. We hypothesize that the TOX-induced exhaustion program serves to prevent the overstimulation of T cells and activation-induced cell death in settings of chronic antigen stimulation such as cancer.
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