重编程
EZH2型
表观遗传学
癌症研究
表观遗传疗法
细胞效价
过继性细胞移植
免疫学
T细胞
生物
细胞疗法
干细胞
免疫系统
细胞
细胞生物学
细胞分化
DNA甲基化
成体干细胞
遗传学
基因表达
基因
作者
Yingqin Hou,Jaroslav Zak,Yujie Shi,Isaraphorn Pratumchai,Brandon Dinner,Wenjian Wang,Ke Qin,Evan W. Weber,John R. Teijaro,Peng Wu
标识
DOI:10.1101/2023.02.07.527459
摘要
The histone methyltransferase enhancer of zeste homolog 2 (EZH2)-mediated epigenetic regulation of T cell differentiation in acute infection has been extensively investigated. However, the role of EZH2 in T cell exhaustion remains under-explored. Here, using in vitro exhaustion models, we demonstrated that transient inhibition of EZH2 in T cells before the phenotypic onset of exhaustion with a clinically approved inhibitor, Tazemetastat, delayed their dysfunctional progression and maintained T cell stemness and polyfunctionality while having no negative impact on cell proliferation. Tazemetestat induced T cell epigenetic reprogramming and increased the expression of the self-renewing T cell transcription factor TCF1 by reducing its promoter H3K27 methylation preferentially in rapidly dividing T cells. In a murine melanoma model, T cells pre-treated with tazemetastat exhibited a superior response to anti-PD-1 blockade therapy after adoptive transfer. Collectively, these data unveil the potential of transient epigenetic reprogramming as a potential intervention to be combined with checkpoint blockade for immune therapy.
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