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高可信度的正常上皮细胞鉴定方法能够鉴定结直肠癌细胞微环境中的一种新型干细胞样状态。

High-confidence calling of normal epithelial cells allows identification of a novel stem-like cell state in the colorectal cancer microenvironment.

机构信息

Core Unit Bioinformatics, Berlin Institute of Health at Charité - Universitätsmedizin Berlin, Berlin, Germany.

Institute of Pathology, Charité - Universitätsmedizin Berlin, Freie Universität Berlin and Humboldt-Universität zu Berlin, Berlin, Germany.

出版信息

Int J Cancer. 2024 Nov 1;155(9):1655-1669. doi: 10.1002/ijc.35079. Epub 2024 Jul 19.

Abstract

Single-cell analyses can be confounded by assigning unrelated groups of cells to common developmental trajectories. For instance, cancer cells and admixed normal epithelial cells could adopt similar cell states thus complicating analyses of their developmental potential. Here, we develop and benchmark CCISM (for Cancer Cell Identification using Somatic Mutations) to exploit genomic single nucleotide variants for the disambiguation of cancer cells from genomically normal non-cancer cells in single-cell data. We find that our method and others based on gene expression or allelic imbalances identify overlapping sets of colorectal cancer versus normal colon epithelial cells, depending on molecular characteristics of individual cancers. Further, we define consensus cell identities of normal and cancer epithelial cells with higher transcriptome cluster homogeneity than those derived using existing tools. Using the consensus identities, we identify significant shifts of cell state distributions in genomically normal epithelial cells developing in the cancer microenvironment, with immature states increased at the expense of terminal differentiation throughout the colon, and a novel stem-like cell state arising in the left colon. Trajectory analyses show that the new cell state extends the pseudo-time range of normal colon stem-like cells in a cancer context. We identify cancer-associated fibroblasts as sources of WNT and BMP ligands potentially contributing to increased plasticity of stem cells in the cancer microenvironment. Our analyses advocate careful interpretation of cell heterogeneity and plasticity in the cancer context and the consideration of genomic information in addition to gene expression data when possible.

摘要

单细胞分析可能会受到将不相关的细胞群体分配到共同的发育轨迹的影响。例如,癌细胞和混合的正常上皮细胞可能会采用类似的细胞状态,从而使对其发育潜力的分析变得复杂。在这里,我们开发并基准测试 CCISM(用于使用体细胞突变识别癌细胞),以利用基因组中单核苷酸变异来区分单细胞数据中的癌细胞和基因组正常的非癌细胞。我们发现,我们的方法和其他基于基因表达或等位基因失衡的方法可以识别出重叠的结直肠癌与正常结肠上皮细胞集,这取决于个别癌症的分子特征。此外,我们定义了正常和癌症上皮细胞的共识细胞身份,其转录组聚类同质性高于使用现有工具得出的那些。使用共识身份,我们确定了在癌症微环境中发育的基因组正常上皮细胞中细胞状态分布的显著变化,以不成熟状态为代价增加了整个结肠的终末分化,并且在左结肠中出现了一种新的干细胞样细胞状态。轨迹分析表明,在癌症环境中,新的细胞状态延长了正常结肠干细胞样细胞的伪时间范围。我们确定癌症相关成纤维细胞是 WNT 和 BMP 配体的来源,这些配体可能有助于增加癌症微环境中干细胞的可塑性。我们的分析主张在癌症环境中仔细解释细胞异质性和可塑性,并在可能的情况下考虑基因组信息而不仅仅是基因表达数据。

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