Kristen E Pauken, Samuel C Markson, Thomas S Conway, Vikram R Juneja, Osmaan Shahid, Kelly P Burke, Jared H Rowe, Thao H Nguyen, Jenna L Collier, Jaclyn M L Walsh, Megan E Fung, Jacob M Luber, Alison E Ringel, Jason M Schenkel, Gordon J Freeman, Marcia C Haigis, Meromit Singer, Arlene H Sharpe
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引用次数: 0
摘要
尽管PD-1抑制剂已被fda批准用于治疗超过25种不同的癌症,但其产生反应的机制仍不完全清楚。为了研究PD-1缺失的CD8+ T细胞如何影响相同肿瘤微环境中表达PD-1的CD8+ T细胞,我们开发了一种诱导型PD-1敲除(KO)模型,其中PD-1在约50%的细胞上被删除。PD-1在MC38肿瘤细胞植入后第7天开始缺失,导致肿瘤得到强有力的控制。值得注意的是,肿瘤中表达PD-1的CD8+ T细胞具有与PD-1 KO CD8+ T细胞相似的功能增强。通过单细胞RNA-seq和TCR-seq,我们发现PD-1缺失后的主要转录变化在PD-1 KO和表达PD-1的CD8+ T细胞中是共享的,尽管PD-1 KO克隆优先扩增。这些数据表明,PD-1抑制剂不仅发挥细胞内在作用,还可能通过非细胞自主机制促进T细胞功能的增加,这对设计基于PD-1的癌症免疫疗法具有重要意义。
PD-1 regulates tumor-infiltrating CD8+ T cells in both a cell-intrinsic and a cell-extrinsic fashion.
Although PD-1 inhibitors are FDA-approved for over 25 different cancers, the mechanisms contributing to response remain incompletely understood. To investigate how PD-1-deleted CD8+ T cells influence PD-1-expressing CD8+ T cells in the same tumor microenvironment, we developed an inducible PD-1 knockout (KO) model in which PD-1 is deleted on ∼50% of cells. PD-1 deletion beginning at day 7 after implantation of MC38 tumor cells led to robust tumor control. Remarkably, PD-1-expressing CD8+ T cells in the tumor had increased functionality similar to PD-1 KO CD8+ T cells. Using single-cell RNA-seq and TCR-seq, we found that the major transcriptional changes following PD-1 deletion were shared by PD-1 KO and PD-1-expressing CD8+ T cells, although PD-1 KO clones preferentially expanded. These data suggest PD-1 inhibitors not only exert cell-intrinsic effects but also may promote increased T cell function through non-cell-autonomous mechanisms, which has important implications for design of PD-1-based cancer immunotherapies.
期刊介绍:
Since its establishment in 1896, the Journal of Experimental Medicine (JEM) has steadfastly pursued the publication of enduring and exceptional studies in medical biology. In an era where numerous publishing groups are introducing specialized journals, we recognize the importance of offering a distinguished platform for studies that seamlessly integrate various disciplines within the pathogenesis field.
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Encompassing human studies and diverse in vivo experimental models of human disease, our focus within medical biology spans genetics, inflammation, immunity, infectious disease, cancer, vascular biology, metabolic disorders, neuroscience, and stem cell biology. We eagerly welcome reports ranging from atomic-level analyses to clinical interventions that unveil new mechanistic insights.