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:Progressive natural killer cell dysfunction in advanced-stage clear-cell renal cell carcinoma and association with clinical outcomes.
Progressive natural killer cell dysfunction in advanced-stage clear-cell renal cell carcinoma and association with clinical outcomes.
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功能失调的肿瘤驻留 NK 细胞表型在转移性疾病患者中富集,并与多个患者队列中晚期 ccRCC 患者较差的生存相关。恢复 NK 细胞功能(通过细胞因子刺激或 NK 细胞工程化)可能为 ccRCC 的治疗干预提供新途径。
自然杀伤(NK)细胞是透明细胞肾细胞癌(ccRCC)中抗肿瘤免疫的重要贡献者。然而,它们在ccRCC中的表型、功能以及与临床结局的关联仍知之甚少。
我们分析了来自不同临床阶段ccRCC患者的13个原发肿瘤、1个局部肿瘤扩展和1个转移灶的单细胞RNA测序数据。对于每个原发肿瘤标本,还分析了配对的正常肾脏。进行差异基因表达分析以研究NK细胞表型并推导基因表达特征。来自感兴趣的NK细胞亚群的基因特征被用于查询批量转录组数据集及其与临床结果的表达关联。最后,通过从ccRCC组织中分离活NK细胞、与K562靶细胞共培养,并通过流式细胞术测量细胞因子产生(干扰素-γ)和细胞毒性(CD107a)标志物,评估了肿瘤浸润NK细胞功能(细胞因子产生和细胞毒性)。
对13例ccRCC患者(肿瘤/正常肾脏)的单细胞转录组数据进行分析,获得21 139个NK细胞。聚类分析揭示了六个NK细胞亚群。与局限性ccRCC和正常肾脏相比,Bright-like NK细胞在晚期ccRCC中显著富集,表达组织驻留标志物(ZNF683/Hobit、ITGA1/CD49a、CD9、ITGAE/CD103),且细胞毒性基因(GZMB/Granzyme-B、PRF1/perforin)表达降低。在独立队列(The Cancer Genome Atlas ccRCC队列、CheckMate 025)中,代表这种功能障碍NK细胞表型的基因表达评分在晚期ccRCC中富集,并与更差的总生存期相关。对ccRCC肿瘤浸润NK细胞的功能探究证实,与CD49a-CD9- NK细胞相比,肿瘤驻留的CD49a+CD9+ NK细胞细胞毒性受损。
Natural killer (NK) cells are important contributors to antitumor immunity in clear-cell renal cell carcinoma (ccRCC). However, their phenotype, function, and association with clinical outcomes in ccRCC remain poorly understood.
We analyzed single-cell RNA sequencing data from 13 primary tumors, 1 localized tumor extension, and 1 metastasis from ccRCC patients at different clinical stages. For each primary tumor specimen, paired normal kidneys were also analyzed. Differential gene expression analysis was carried out to investigate NK cell phenotypes and to derive a gene expression signature. Gene signatures from NK cell subclusters of interest were used to interrogate bulk transcriptomic datasets and expression with clinical outcomes. Finally, tumor-infiltrating NK cell function (cytokine production and cytotoxicity) was assessed by isolation of live NK cells from ccRCC tissue, co-culture with K562 target cells, and measurement of cytokine production (interferon-γ) and cytotoxicity (CD107a) markers by flow cytometry.
Single-cell transcriptomic data were analyzed from 13 patients with ccRCC (tumor/normal kidney), resulting in 21 139 NK cells. Clustering analysis revealed six NK cell subsets. Bright-like NK cells were significantly enriched in advanced ccRCC compared with localized ccRCC and normal kidney, expressed markers of tissue residency (ZNF683/Hobit, ITGA1/CD49a, CD9, ITGAE/CD103), and had decreased expression of cytotoxicity genes (GZMB/Granzyme-B, PRF1/perforin). In independent cohorts (The Cancer Genome Atlas ccRCC cohort, CheckMate 025), a gene expression score representing this dysfunctional NK cell phenotype was enriched in advanced ccRCC and was associated with worse overall survival. Functional interrogation of tumor-infiltrating NK cells from ccRCC confirmed that tumor-resident CD49a+CD9+ NK cells had impaired cytotoxicity compared with CD49a-CD9- NK cells.
A dysfunctional, tumor-resident NK cell phenotype was enriched among patients with metastatic disease and associated with worse survival in patients with advanced ccRCC across multiple patient cohorts. Restoration of NK cell function (via cytokine stimulation or NK cell engineering) could provide a novel avenue for therapeutic intervention against ccRCC.
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