生物
细胞
鉴定(生物学)
核糖核酸
计算生物学
单细胞测序
基因
遗传学
表型
外显子组测序
植物
作者
Xuefei Wang,Xiangru Shen,Shan Chen,Hongyi Liu,Ni Hong,Hanbing Zhong,Xi Chen,Wenfei Jin
出处
期刊:Journal of Immunology
[American Association of Immunologists]
日期:2021-12-15
卷期号:208 (2): 396-406
被引量:57
标识
DOI:10.4049/jimmunol.2100581
摘要
Abstract Classic T cell subsets are defined by a small set of cell surface markers, while single-cell RNA sequencing (scRNA-seq) clusters cells using genome-wide gene expression profiles. The relationship between scRNA-seq clustered populations (scCPops) and cell surface marker–defined classic T cell subsets remains unclear. In this article, we integrated six bead-enriched T cell subsets with 62,235 single-cell transcriptomes from human PBMCs and clustered them into nine scCPops. Bead-enriched CD4+/CD45RA+/CD25− naive T and CD8+/CD45RA+ naive T cells were mainly clustered into their scCPop counterparts, while cells from the other T cell subsets were assigned to multiple scCPops, including mucosal-associated invariant T cells and NKT cells. The multiple T cell subsets forming one scCPop exhibit similar expression patterns, but not vice versa, indicating scCPop is a more homogeneous cell population with similar cell states. Interestingly, we discovered and named IFN signaling–associated gene (ISAG) high T (ISAGhi T) cells, a T cell subpopulation that highly expressed ISAGs. We further enriched ISAGhi T cells from human PBMCs by FACS of BST2 for scRNA-seq analyses. The ISAGhi T cell cluster disappeared on t-distributed stochastic neighbor embedding plot after removing ISAGs, whereas the ISAGhi T cell cluster showed up by analysis of ISAGs alone, indicating ISAGs are the major contributor of the ISAGhi T cell cluster. BST2+ and BST2− T cells showing different efficiencies of T cell activation indicate that a high level of ISAGs may contribute to quick immune responses.
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