生物
流式细胞术
细胞
单细胞分析
移植
核糖核酸
干细胞
细胞生物学
卫星
祖细胞
计算生物学
基因
遗传学
工程类
外科
航空航天工程
医学
作者
Emilie Barruet,Steven Garcia,Katharine Striedinger,Jake Wu,Solomon Lee,Lauren Byrnes,Alvin Wong,Xuefeng Sun,Stanley Tamaki,Andrew S. Brack,Jason H. Pomerantz
出处
期刊:eLife
[eLife Sciences Publications, Ltd.]
日期:2020-04-01
卷期号:9
被引量:110
摘要
Although heterogeneity is recognized within the murine satellite cell pool, a comprehensive understanding of distinct subpopulations and their functional relevance in human satellite cells is lacking. We used a combination of single cell RNA sequencing and flow cytometry to identify, distinguish, and physically separate novel subpopulations of human PAX7+ satellite cells (Hu-MuSCs) from normal muscles. We found that, although relatively homogeneous compared to activated satellite cells and committed progenitors, the Hu-MuSC pool contains clusters of transcriptionally distinct cells with consistency across human individuals. New surface marker combinations were enriched in transcriptional subclusters, including a subpopulation of Hu-MuSCs marked by CXCR4/CD29/CD56/CAV1 (CAV1+). In vitro, CAV1+ Hu-MuSCs are morphologically distinct, and characterized by resistance to activation compared to CAV1- Hu-MuSCs. In vivo, CAV1+ Hu-MuSCs demonstrated increased engraftment after transplantation. Our findings provide a comprehensive transcriptional view of normal Hu-MuSCs and describe new heterogeneity, enabling separation of functionally distinct human satellite cell subpopulations.
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