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Mesenchymal TGF-β signaling orchestrates dental epithelial stem cell homeostasis through wnt signaling

机译:间质TGF-β信号通过wnt信号协调牙齿上皮干细胞稳态

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In mouse, continuous growth of the postnatal incisor is coordinated by two populations of multipotent progenitor cells, the dental papilla mesenchymal cells and dental epithelial stem cells, residing at the proximal end of the incisor, yet the molecular mechanism underlying the cooperation between mesenchymal and epithelial cells is largely unknown. Here, transforming growth factor-β (TGF-β) type II receptor (Tgfbr2) was specifically deleted within the postnatal dental papilla mesenchyme. The Tgfbr2-deficient mice displayed malformed incisors with wavy mineralized structures at the labial side as a result of increased differentiation of dental epithelial stem cells. We found that mesenchymal Tgfbr2 disruption led to upregulated expression of Wnt5a and downregulated expression of Fgf3/10 in the mesenchyme, both of which synergistically enhanced Lrp5/6-β-catenin signaling in the cervical loop epithelium. In accord with these findings, mesenchyme-specific depletion of the Wnt transporter gene Wls abolished the aberrant mineralized structures caused by Tgfbr2 deletion. Thus, mesenchymal TGF-β signaling provides a unifying mechanism for the homeostasis of dental epithelial stem cells via a Wnt signaling-mediated mesenchymal-epithelial cell interaction.
机译:在小鼠中,产后门牙的连续生长由位于门牙近端的两个多能祖细胞群(即牙乳头间充质细胞和牙齿上皮干细胞)协调,但间充质和上皮之间协同作用的分子机制细胞在很大程度上是未知的。在此,在出生后的牙乳头间充质内特异删除了转化生长因子-β(TGF-β)II型受体(Tgfbr2)。由于牙齿上皮干细胞分化的增加,Tgfbr2缺陷型小鼠在唇侧显示了畸形的门牙,具有波浪状的矿化结构。我们发现间充质Tgfbr2破坏导致间充质中Wnt5a的表达上调和Fgf3 / 10的表达下调,两者均协同增强子宫颈环上皮细胞的Lrp5 /6-β-catenin信号传导。根据这些发现,Wnt转运蛋白基因Wls的间质特异性消耗消除了由Tgfbr2缺失引起的异常矿化结构。因此,间质TGF-β信号传导通过Wnt信号传导介导的间质-上皮细胞相互作用为牙齿上皮干细胞的稳态提供了统一的机制。

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