生物
乳腺癌
转录组
细胞分化
细胞
上皮
单细胞分析
单细胞测序
基因表达谱
细胞生物学
计算生物学
电池类型
表型
基因
遗传学
基因表达
癌症
外显子组测序
作者
Quy Nguyen,Nicholas Pervolarakis,Kerrigan Blake,Dennis Ma,Ryan T. Davis,Nathan James,Anh The Phung,Elizabeth Willey,Raj Kumar,Eric Jabart,Ian Driver,Jason R. Rock,Andrei Goga,Seema A. Khan,Devon A. Lawson,Zena Werb,Kai Kessenbrock
标识
DOI:10.1038/s41467-018-04334-1
摘要
Breast cancer arises from breast epithelial cells that acquire genetic alterations leading to subsequent loss of tissue homeostasis. Several distinct epithelial subpopulations have been proposed, but complete understanding of the spectrum of heterogeneity and differentiation hierarchy in the human breast remains elusive. Here, we use single-cell mRNA sequencing (scRNAseq) to profile the transcriptomes of 25,790 primary human breast epithelial cells isolated from reduction mammoplasties of seven individuals. Unbiased clustering analysis reveals the existence of three distinct epithelial cell populations, one basal and two luminal cell types, which we identify as secretory L1- and hormone-responsive L2-type cells. Pseudotemporal reconstruction of differentiation trajectories produces one continuous lineage hierarchy that closely connects the basal lineage to the two differentiated luminal branches. Our comprehensive cell atlas provides insights into the cellular blueprint of the human breast epithelium and will form the foundation to understand how the system goes awry during breast cancer.
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