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:Mendelian Randomization Validates the Immune Landscape Mediated by Aggrephagy in Esophageal Squamous Cell Carcinoma Patients from the Perspectives of Multi-omics.
Mendelian Randomization Validates the Immune Landscape Mediated by Aggrephagy in Esophageal Squamous Cell Carcinoma Patients from the Perspectives of Multi-omics.
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通过生物信息学描绘由聚集体自噬介导的ESCC患者免疫景观,并通过孟德尔随机化识别对食管癌具有因果属性的预后细胞簇基因。
对ESCC单细胞数据集进行质量控制、降维和注释。基于AGG相关基因的表达对各种细胞亚群进行NMF聚类,并鉴定每个簇中的AGG相关基因。使用拟时序分析观察各簇中AGG相关基因表达的变化。采用细胞通讯分析观察细胞亚群之间的相互作用。基于不同细胞特征观察相关亚群中分类、代谢或KEGG通路的变化。基于GSVA评估TCGA和GEO样本的AGG簇属性,并观察各簇的预后。通过TIDE数据库和微卫星不稳定性观察AGG簇相关样本的免疫治疗情况以及突变水平与预后的关系。最后,以各预后AGG簇中基因的eQTL作为工具变量,以食管癌作为结局因素。通过孟德尔随机化分析,建立与食管癌具有因果关系的AGG簇相关基因。
单细胞转录组数据的降维聚类鉴定出19个不同的细胞亚群。对19个细胞亚群重新注释后发现,ESCA患者的CAF细胞、B细胞、T细胞、NK细胞等均较对照组升高。CAF细胞与大多数细胞具有高度通讯。不同AGG聚类在巨噬细胞代谢和B细胞介导的信号转导通路方面存在显著差异。TUBA1B+Mac-C0聚类及其他聚类在转录水平上表现出预测预后和免疫治疗的潜力。孟德尔随机化分析揭示了AGG聚类中的CTSZ、CTSC、DAD、COLEC12、ATOX1等基因与食管癌发病之间存在因果关系。
Aggrephagy介导并影响ESCC患者中多种免疫细胞的变化和相互作用。我们阐明了AGG相关聚类,如TUBA1B+Mac-C0、VIM+CD8+T_cells-C0、UBB+Mac-C2,在介导ESCC患者预后和免疫治疗中的作用。在AGG聚类中鉴定出与食管癌发生存在因果关联的基因,包括CTSZ、CTSC、DAD、COLEC12、ATOX1等,为临床免疫治疗提供了新证据。这些发现强调了这些基因聚类在影响食管癌预后和免疫反应方面的重要意义,为潜在的治疗靶点和预后标志物提供了线索。
Objective: To delineate the immune landscape of ESCC patients mediated by aggrephagy through bioinformatics and identify prognostic cell cluster genes with causal attributes to esophageal cancer through Mendelian randomization. Methods: Quality control, dimension reduction, and annotation were performed on the ESCC single-cell dataset. NMF clustering of various cell subgroups was carried out based on the expression of AGG-related genes, and AGG-related genes in each cluster were identified. Pseudo-temporal analysis was used to observe changes in the expression of AGG-related genes in each cluster.
Cell communication analysis was employed to observe interactions between cell subgroups. Changes in classification, metabolism, or KEGG pathways in related subgroups were observed based on different cell characteristics. The AGG cluster attributes of TCGA and GEO samples were assessed based on GSVA, and the prognosis of each cluster was observed. The immune treatment situation and the relationship between mutation level and prognosis of AGG cluster-related samples were observed through the TIDE database and microsatellite instability.
Finally, the eQTL of genes in each prognostic AGG cluster was used as an instrumental variable, with esophageal cancer as the outcome factor. Through Mendelian randomization analysis, AGG cluster-related genes with a causal relationship to esophageal cancer were established. Results: Dimension reduction clustering of single-cell transcriptome data identified 19 different cell subgroups. After re-annotation of the 19 cell subgroups, it was found that the CAF cells, B cells, T cells, NK cells, etc. , of ESCA patients were all elevated compared to the control group. CAF cells had a high degree of communication with most cells.
There were significant differences in macrophage metabolism and B-cell-mediated signal transduction pathways in different AGG clusters. The TUBA1B+Mac-C0 cluster, along with other clusters, exhibits predictive prognostic and immunotherapeutic potential at the transcriptional level.
Mendelian randomization analysis revealed a causal relationship between genes such as CTSZ, CTSC, DAD, COLEC12, ATOX1, within the AGG cluster, and the onset of esophageal cancer. Conclusion: Aggrephagy mediates and influences the alterations and interactions of various immune cells in patients with ESCC.
We elucidate the roles of AGG-related clusters, such as TUBA1B+Mac-C0, VIM+CD8+T_cells-C0, UBB+Mac-C2, in mediating prognosis and immune therapy in ESCC patients. Genes causally associated with the occurrence of esophageal cancer are identified within the AGG cluster, including CTSZ, CTSC, DAD, COLEC12, ATOX1, etc. , offering new evidence for clinical immune therapy.
These findings underscore the significance of these gene clusters in influencing both prognosis and immune responses in the context of esophageal cancer, shedding light on potential therapeutic targets and prognostic markers.
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