College of Bioinformatics Science and Technology, Harbin Medical University, 157 Baojian Road, Harbin, China.
Brief Bioinform. 2024 Jul 25;25(5). doi: 10.1093/bib/bbae368.
Systematic investigation of tumor-infiltrating immune (TII) cells is important to the development of immunotherapies, and the clinical response prediction in cancers. There exists complex transcriptional regulation within TII cells, and different immune cell types display specific regulation patterns. To dissect transcriptional regulation in TII cells, we first integrated the gene expression profiles from single-cell datasets, and proposed a computational pipeline to identify TII cell type-specific transcription factor (TF) mediated activity immune modules (TF-AIMs). Our analysis revealed key TFs, such as BACH2 and NFKB1 play important roles in B and NK cells, respectively. We also found some of these TF-AIMs may contribute to tumor pathogenesis. Based on TII cell type-specific TF-AIMs, we identified eight CD8+ T cell subtypes. In particular, we found the PD1 + CD8+ T cell subset and its specific TF-AIMs associated with immunotherapy response. Furthermore, the TII cell type-specific TF-AIMs displayed the potential to be used as predictive markers for immunotherapy response of cancer patients. At the pan-cancer level, we also identified and characterized six molecular subtypes across 9680 samples based on the activation status of TII cell type-specific TF-AIMs. Finally, we constructed a user-friendly web interface CellTF-AIMs (http://bio-bigdata.hrbmu.edu.cn/CellTF-AIMs/) for exploring transcriptional regulatory pattern in various TII cell types. Our study provides valuable implications and a rich resource for understanding the mechanisms involved in cancer microenvironment and immunotherapy.
系统地研究肿瘤浸润免疫(TII)细胞对于免疫疗法的发展和癌症的临床反应预测都很重要。TII 细胞内存在复杂的转录调控,不同的免疫细胞类型显示出特定的调控模式。为了剖析 TII 细胞中的转录调控,我们首先整合了单细胞数据集的基因表达谱,并提出了一种计算策略来识别 TII 细胞类型特异性转录因子(TF)介导的活性免疫模块(TF-AIMs)。我们的分析揭示了关键的 TF,如 BACH2 和 NFKB1,分别在 B 细胞和 NK 细胞中发挥重要作用。我们还发现其中一些 TF-AIMs 可能有助于肿瘤发病机制。基于 TII 细胞类型特异性 TF-AIMs,我们鉴定了 8 种 CD8+T 细胞亚型。特别是,我们发现 PD1+CD8+T 细胞亚群及其特定的 TF-AIMs与免疫治疗反应相关。此外,TII 细胞类型特异性 TF-AIMs 具有作为癌症患者免疫治疗反应预测标志物的潜力。在泛癌症水平上,我们还基于 TII 细胞类型特异性 TF-AIMs 的激活状态,在 9680 个样本中鉴定和表征了六种分子亚型。最后,我们构建了一个用户友好的网络界面 CellTF-AIMs(http://bio-bigdata.hrbmu.edu.cn/CellTF-AIMs/),用于探索各种 TII 细胞类型中的转录调控模式。我们的研究为理解癌症微环境和免疫治疗中的相关机制提供了有价值的启示和丰富的资源。