生物
干细胞
细胞生物学
利基
人口
细胞分化
解剖
发育生物学
成体干细胞
牙列
谱系(遗传)
转录因子
间充质干细胞
细胞
干细胞巢
神经干细胞
免疫学
干细胞标记物
遗传学
胚胎干细胞
活体细胞成像
作者
Yasmin Mohtadi Hamadani,Laura Evers,Satu-Marja Myllymäki,Emma Juuri,Maria Jussila,Paul Gueguen,Mina Mina,Irma Thesleff,Anamaria Balic
出处
期刊:Stem Cells
[Oxford University Press]
日期:2025-11-25
标识
DOI:10.1093/stmcls/sxaf074
摘要
Abstract The precise timing of stem cell specification and niche formation during murine incisor development is poorly understood, and it is unclear whether these processes occur simultaneously or in a sequential manner. Functional dental epithelial stem cells are marked by the expression of Sox2, a transcription factor that is broadly expressed in the dental epithelium at the dentition onset and restricted to stem cells in fully developed incisor. Using genetic lineage tracing in Sox2CreERT2/+; R26RmT/mGand Sox2CreERT2/+; R26RtdT/+embryos along with a single-cell RNA sequencing at different stages of incisor development, we investigated the timing of the stem cell specification and its temporal relationship with niche formation. Our results reveal the presence of a Sox2-expressing stem cell-like population prior to formation of the functional niche. These cells localize to the leading edge of the advancing incisor epithelium where they are maintained in an undifferentiated state. Our data demonstrate presence of actomyosin network and a generation of a contractile tension which helps confine Sox2+ stem cells to the leading edge. This mechanical confinement likely plays an important role in maintaining their stemness until the niche is functionally and structurally established. Partial or complete disruption of the actomyosin network disables the clustering of Sox2-expressing cells, potentially triggering their premature differentiation, and ultimately leads to impaired formation of the functional stem cell niche and abnormal growth of the incisor.
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