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:Exploration of the roles of SSR2 in hepatocellular carcinogenesis based on single-cell transcriptomics and spatial transcriptomics.
Exploration of the roles of SSR2 in hepatocellular carcinogenesis based on single-cell transcriptomics and spatial transcriptomics.
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肝细胞癌(HCC)是全球最常见的癌症类型之一。然而,由于发病机制复杂且治疗方法有限,HCC预后较差。
为了改善HCC患者的预后,我们对HCC患者的肝组织进行了单细胞转录组和空间转录组分析。我们在空间转录组上应用了非负矩阵分解(NMF)方法,并通过GO过表征分析发现了一条与HCC相关的关键通路。根据通路活性评分,将单细胞转录组中的细胞分为三组。随后我们进行了hdWGCNA,并筛选出在组间表现出显著差异的HCC相关共表达基因模块。采用基于bulk转录组的整合机器学习算法进行核心基因筛选。我们分别评估了它们作为独立诊断标志物的AUC值,并保留了一个核心基因。我们使用该基因进行了生存分析。接下来,我们进行了免疫浸润分析、肿瘤微环境分析和药物敏感性分析。最后,应用拟时序分析、分化潜能分析和细胞间通讯分析来阐明肿瘤发生和进展的机制。
单细胞转录组分析揭示了HCC患者细胞的高度异质性。基于NMF的GO过表征分析表明,细胞质翻译通路在大多数NMF组分中富集。SSR2基因通过了整合机器学习算法,并具有优异的诊断能力(AUC > 0.8)和预后能力(K-M曲线,P = 0.007)。进一步分析确定,与所有其他免疫细胞簇相比,SSR2是NK细胞中按平均表达水平排名最高的基因。其表达在NK细胞成熟过程中呈持续下降趋势。SSR2高表达的NK细胞比SSR2低表达的NK细胞表现出更强的细胞间通讯。NK细胞主要通过MIF介导的信号通路与其他细胞进行通讯。
在肝细胞癌(HCC)中,NK细胞中SSR2基因的高表达伴随着细胞质翻译通路的增强,这促进了MIF的分泌并激活其下游信号通路,从而驱动肿瘤免疫微环境的破坏和疾病的进展。
Hepatocellular carcinoma (HCC) is one of the most common types of cancer globally. However, HCC features poor prognosis due to complex pathogenesis and limitations of therapeutic approaches. METHOD: To improve the prognosis of HCC patients, we analyzed single-cell transcriptome and spatial transcriptome on liver tissues from HCC patients. We applied Non-negative Matrix Factorization (NMF) method on spatial transcriptome and found a critical pathway associated with HCC through GO over-representation analysis. According to the pathway activity score, the cells in single-cell transcriptome were divided into three groups. Then we conducted hdWGCNA and selected HCC-related co-expressed gene modules which showed significant intergroup differences. Integrative machine learning algorithms on bulk transcriptome were employed for core genes selection. We respectively evaluated their AUC values as independent diagnostic markers and retained a core gene. We conducted a survival analysis using this gene. Next, we performed immune infiltration analysis, tumor microenvironmental analysis and drug sensitivity analysis. Finally, pseudotime analysis, differentiation potential analysis and cell-cell communication analysis were applied to decipher the mechanisms underlying tumor initiation and progression.
Single-cell transcriptome analysis revealed the high heterogeneity of cells in patients with HCC. The GO over-representation analysis based on NMF indicated that cytoplasmic translation path was enriched in most NMF components. The SSR2 gene passed the integrative machine learning algorithms and possessed excellent diagnosis (AUC > 0.8) and prognostic abilities (K-M curve, P = 0.007). Further analysis identified SSR2 as the top-ranked gene by average expression level in NK cells compared to all other immune cell clusters. Its expression showed a consistent downward trend during NK cell maturation.NK cells with high expression of SSR2 exhibited stronger cell-cell communication than those with low expression of SSR2. NK cells mainly communicated with other cells through MIF-mediated signaling pathway.
In hepatocellular carcinoma (HCC), the high expression of the SSR2 gene in NK cells is accompanied by enhanced cytoplasmic translation pathway, which promotes MIF secretion and activates its downstream signaling pathways, thereby driving the disruption of the tumor immune microenvironment and the progression of the disease.
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