生物
再生(生物学)
干细胞
细胞生物学
染色质
细胞分化
移植
细胞
单细胞分析
遗传学
基因
医学
外科
作者
Arinze E. Okafor,Xin Lin,Chenghao Situ,Xiaolin Wei,Yunlong Xiang,Xiuqing Wei,Zhenguo Wu,Yarui Diao
标识
DOI:10.1083/jcb.202211073
摘要
A balance between self-renewal and differentiation is critical for the regenerative capacity of tissue-resident stem cells. In skeletal muscle, successful regeneration requires the orchestrated activation, proliferation, and differentiation of muscle satellite cells (MuSCs) that are normally quiescent. A subset of MuSCs undergoes self-renewal to replenish the stem cell pool, but the features that identify and define self-renewing MuSCs remain to be elucidated. Here, through single-cell chromatin accessibility analysis, we reveal the self-renewal versus differentiation trajectories of MuSCs over the course of regeneration in vivo. We identify Betaglycan as a unique marker of self-renewing MuSCs that can be purified and efficiently contributes to regeneration after transplantation. We also show that SMAD4 and downstream genes are genetically required for self-renewal in vivo by restricting differentiation. Our study unveils the identity and mechanisms of self-renewing MuSCs, while providing a key resource for comprehensive analysis of muscle regeneration.
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