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灵活的命运决定确保了毛囊中稳健的分化。

Flexible fate determination ensures robust differentiation in the hair follicle.

机构信息

Department of Genetics, Yale School of Medicine, New Haven, CT, USA.

Department of Dermatology, Institute for Regenerative Medicine, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

出版信息

Nat Cell Biol. 2018 Dec;20(12):1361-1369. doi: 10.1038/s41556-018-0232-y. Epub 2018 Nov 12.

Abstract

Tissue homeostasis is sustained by stem cell self-renewal and differentiation. How stem cells coordinately differentiate into multiple cell types is largely unclear. Recent studies underline the heterogeneity among stem cells or common progenitors, suggesting that coordination occurs at the stem cell/progenitor level. Here, by tracking and manipulating the same stem cells and their progeny at the single-cell level in live mice, we uncover an unanticipated flexibility of homeostatic stem cell differentiation in hair follicles. Although stem cells have been shown to be flexible upon injury, we demonstrate that hair germ stem cells at the single-cell level can flexibly establish all of the differentiation lineages even in uninjured conditions. Furthermore, stem cell-derived hair progenitors in the structure called matrix, previously thought to be unipotent, flexibly change differentiation outcomes as a consequence of unexpected dynamic relocation. Finally, the flexible cell fate determination mechanism maintains normal differentiation and tissue architecture against an ectopic differentiation stimulus induced by Wnt activation. This work provides a model of continual fate channelling and late commitment of stem cells to achieve coordinated differentiation and robust tissue architecture.

摘要

组织稳态由干细胞自我更新和分化维持。干细胞如何协调分化为多种细胞类型在很大程度上尚不清楚。最近的研究强调了干细胞或共同祖细胞之间的异质性,表明协调发生在干细胞/祖细胞水平。在这里,我们通过在活小鼠中以单细胞水平跟踪和操作相同的干细胞及其后代,揭示了毛囊中稳态干细胞分化的出人意料的灵活性。尽管已经表明干细胞在受伤时具有灵活性,但我们证明了在单细胞水平上的毛囊生殖干细胞即使在未受伤的情况下也可以灵活地建立所有分化谱系。此外,先前被认为是单能的结构称为基质中的干细胞衍生的毛发祖细胞,由于意外的动态重定位,其分化结果具有灵活性。最后,灵活的细胞命运决定机制维持了正常的分化和组织结构,对抗由 Wnt 激活引起的异位分化刺激。这项工作提供了一个持续的命运通道和干细胞晚期决定的模型,以实现协调的分化和强大的组织结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38f6/6314017/810a5ff83d4f/nihms-1509637-f0001.jpg

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