RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Single-cell data revealed exhaustion of characteristic NK cell subpopulations and T cell subpopulations in hepatocellular carcinoma.
Single-cell data revealed exhaustion of characteristic NK cell subpopulations and T cell subpopulations in hepatocellular carcinoma.
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HCC 中的 CTLA4+ T 细胞亚群表现出功能性耗竭特征,可能通过以 NR3C1、STAT1 和 STAT3 为主导的转录因子网络抑制 T 细胞功能。
晚期肝细胞癌(HCC)患者的治疗和预后一直是重大医学挑战。解析HCC免疫微环境中肿瘤浸润免疫细胞(TIIC)的组成,对于探索分子机制具有重要意义。
基于HCC单细胞数据,从TIIC角度描绘细胞图谱。根据标志基因表达水平确定特定细胞亚群,并开展差异表达分析;根据高表达基因评估各亚群活性。通过生存分析确定影响HCC预后的CTLA4⁺ T细胞亚群,并开展单细胞调控网络推断和聚类分析,以确定该亚群中的转录因子调控网络。
共识别10种细胞类型,NK细胞和T细胞在肿瘤组织中丰度较高。识别出两个NK细胞亚群:FGFBP2⁺ NK细胞和B3GNT7⁺ NK细胞;以及四个T细胞亚群:LAG3⁺ T细胞、CTLA4⁺ T细胞、RCAN3⁺ T细胞和HPGDS⁺ Th2细胞。FGFBP2⁺ NK细胞和CTLA4⁺ T细胞属于耗竭亚群。CTLA4⁺ T细胞水平较高与较差预后相关,并促进肿瘤进展。最后,在CTLA4⁺ T细胞中发现一个由已活化的NR3C1、STAT1和STAT3调控的转录因子网络。
HCC中的CTLA4⁺ T细胞亚群呈现功能耗竭特征,可能通过以NR3C1、STAT1和STAT3为核心的转录因子网络抑制T细胞功能。
The treatment and prognosis of patients with advanced hepatocellular carcinoma (HCC) have been a major medical challenge. Unraveling the landscape of tumor immune infiltrating cells (TIICs) in the immune microenvironment of HCC is of great significance to probe the molecular mechanisms.
Based on single-cell data of HCC, the cell landscape was revealed from the perspective of TIICs. Special cell subpopulations were determined by the expression levels of marker genes. Differential expression analysis was conducted. The activity of each subpopulation was determined based on the highly expressed genes. CTLA4+ T-cell subpopulations affecting the prognosis of HCC were determined based on survival analysis. A single-cell regulatory network inference and clustering analysis was also performed to determine the transcription factor regulatory networks in the CTLA4+ T cell subpopulations.
10 cell types were identified and NK cells and T cells showed high abundance in tumor tissues. Two NK cells subpopulations were present, FGFBP2+ NK cells, B3GNT7+ NK cells. Four T cells subpopulations were present, LAG3+ T cells, CTLA4+ T cells, RCAN3+ T cells, and HPGDS+ Th2 cells. FGFBP2+ NK cells, and CTLA4+ T cells were the exhaustive subpopulation. High CTLA4+ T cells contributed to poor prognostic outcomes and promoted tumor progression. Finally, a network of transcription factors regulated by NR3C1, STAT1, and STAT3, which were activated, was present in CTLA4+ T cells.
CTLA4+ T cell subsets in HCC exhibited functional exhaustion characteristics that probably inhibited T cell function through a transcription factor network dominated by NR3C1, STAT1, and STAT3.
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