Single-cell transcriptomic analysis defines the interplay between tumor cells, viral infection, and the microenvironment in nasopharyngeal carcinoma.
Shanzhao JinRuoyan LiMing-Yuan ChenChao YuLin-Quan TangYan-Min LiuJiang-Ping LiYi-Na LiuYi-Ling LuoYifan ZhaoYu ZhangTian-Liang XiaShang-Xin LiuQi LiuGuan-Nan WangRui YouJing-Yun PengJiang LiFeng HanJianwei WangQiu-Yan ChenLi ZhangHai-Qiang MaiBenjamin E GewurzBo ZhaoLawrence S YoungQian ZhongFan BaiMu-Sheng ZengPublished in: Cell research (2020)
Nasopharyngeal carcinoma (NPC) is an Epstein-Barr virus (EBV)-associated malignancy with a complex tumor ecosystem. How the interplay between tumor cells, EBV, and the microenvironment contributes to NPC progression and immune evasion remains unclear. Here we performed single-cell RNA sequencing on ~104,000 cells from 19 EBV+ NPCs and 7 nonmalignant nasopharyngeal biopsies, simultaneously profiling the transcriptomes of malignant cells, EBV, stromal and immune cells. Overall, we identified global upregulation of interferon responses in the multicellular ecosystem of NPC. Notably, an epithelial-immune dual feature of malignant cells was discovered and associated with poor prognosis. Functional experiments revealed that tumor cells with this dual feature exhibited a higher capacity for tumorigenesis. Further characterization of the cellular components of the tumor microenvironment (TME) and their interactions with tumor cells revealed that the dual feature of tumor cells was positively correlated with the expression of co-inhibitory receptors on CD8+ tumor-infiltrating T cells. In addition, tumor cells with the dual feature were found to repress IFN-γ production by T cells, demonstrating their capacity for immune suppression. Our results provide new insights into the multicellular ecosystem of NPC and offer important clinical implications.
Keyphrases
- epstein barr virus
- single cell
- poor prognosis
- rna seq
- diffuse large b cell lymphoma
- induced apoptosis
- long non coding rna
- machine learning
- climate change
- deep learning
- high throughput
- cell cycle arrest
- stem cells
- dendritic cells
- human health
- endoplasmic reticulum stress
- immune response
- bone marrow
- signaling pathway
- oxidative stress
- cell proliferation
- ultrasound guided